Alexandre CHAGGNES | Chemistry | Best Researcher Award

Prof. Dr. Alexandre CHAGGNES | Chemistry | Best Researcher Award

Professor at Université de Lorraine , France

Prof. Alexandre Chagnes is a highly accomplished researcher with extensive contributions to hydrometallurgy, recycling, electrochemistry, and nuclear chemistry. With over 167 publications, multiple patents, and leadership roles in major research initiatives such as Labex Ressources21 and the Promethee network, he has demonstrated excellence in both academic and applied research. His work in lithium-ion battery recycling and solvent extraction is internationally recognized, and he has played a key role in organizing major scientific conferences and editing influential publications. In addition to his research, Prof. Chagnes is a dedicated educator and mentor, significantly contributing to advanced training in physical chemistry and nuclear processes. While already a global expert, increased collaboration with top international institutions and greater engagement in public science communication could further enhance his impact. Overall, Prof. Chagnes exemplifies innovation, leadership, and scientific excellence, making him a highly suitable and deserving candidate for the Best Researcher Award.

 

Professional Profile 

Education🎓

Prof. Alexandre Chagnes has a strong and focused academic background in chemistry, which laid the foundation for his distinguished research career. He earned his Ph.D. in Physical Chemistry from the University of Tours in 2002, where his doctoral research concentrated on the thermodynamic and electrochemical study of organic electrolytes for lithium-ion batteries. Prior to this, he completed a Master’s degree in Catalysis, Energy, and Clean-up Processes at the University of Poitiers in 1999, emphasizing environmental and energy-related chemical processes. His academic journey began with a Bachelor’s degree in Chemistry from the University of Tours in 1997. Throughout his education, Prof. Chagnes demonstrated a strong commitment to the fields of electrochemistry and solution chemistry, which would later become central to his research focus. His formal training has not only provided him with deep scientific expertise but also positioned him to make lasting contributions in areas critical to energy, sustainability, and material science.

Professional Experience📝

Prof. Alexandre Chagnes has extensive professional experience in the fields of electrochemistry, solution chemistry, and sustainable processes for the extraction and recycling of critical metals. He is currently a Full Professor at Université Paris-Est Créteil (UPEC), where he leads research initiatives on hydrometallurgical processes and environmentally friendly technologies. Over the years, he has coordinated and participated in several national and international research projects focused on energy storage materials, lithium battery recycling, and the recovery of strategic metals. His industry collaborations and interdisciplinary work have contributed to advances in clean technology and resource efficiency. Prior to his current role, he held academic positions that allowed him to mentor Ph.D. students and publish over 100 peer-reviewed articles and book chapters. Prof. Chagnes is also actively involved in editorial work, having served as editor for books and journals related to his expertise. His professional experience reflects a commitment to innovation, sustainability, and academic leadership.

Research Interest🔎

Prof. Alexandre Chagnes’s research interests lie at the intersection of hydrometallurgy, solution chemistry, electrochemistry, and sustainable resource management. He focuses on the development of advanced processes for the extraction, separation, and recycling of strategic and critical metals, with particular emphasis on lithium, uranium, and rare earth elements. His work is highly relevant to modern energy challenges, especially in the recycling of lithium-ion batteries and the recovery of valuable metals from electronic waste and low-grade ores. Prof. Chagnes also explores thermodynamic modeling and the design of solvent extraction systems, contributing to more efficient and environmentally friendly chemical processes. Additionally, he has conducted significant research in nuclear chemistry, particularly related to separation processes in the nuclear fuel cycle. His interdisciplinary approach combines experimental and computational methods to innovate in both academic and industrial contexts. Overall, his research supports global sustainability efforts through circular economy practices and green chemistry solutions.

Award and Honor🏆

Prof. Alexandre Chagnes has earned significant recognition for his contributions to the fields of hydrometallurgy, electrochemistry, and sustainable resource recovery. While specific named awards are not detailed in the provided information, his professional distinctions are evident through his leadership roles, such as Scientific Director of Labex Ressources21 and the start-up WEEEMET, as well as Director of the national Promethee network. His repeated appointments to national academic councils, including the French National University Council for Physical and Analytical Chemistry, reflect his peers’ recognition of his scientific excellence. He has also been selected to lead and organize numerous prestigious international and national conferences, a role typically reserved for highly respected experts. Furthermore, his involvement as a reviewer for 28 international journals, and his position on several editorial and advisory boards, highlight his authority and influence in the scientific community. Collectively, these honors affirm his status as a leading researcher in his domain.

Research Skill🔬

Prof. Alexandre Chagnes possesses a highly advanced and diverse set of research skills, particularly in the domains of hydrometallurgy, electrochemistry, thermodynamics, and solution chemistry. He excels in designing and optimizing chemical separation processes, especially for the extraction and recycling of strategic metals such as lithium, uranium, and rare earth elements. His expertise includes both experimental techniques and computational modeling, enabling him to understand and predict complex chemical interactions at molecular and process levels. He is skilled in thermodynamic analysis, solvent extraction, and the development of eco-efficient recycling technologies. Additionally, his experience in nuclear chemistry adds depth to his technical versatility. Prof. Chagnes’s ability to lead interdisciplinary projects, manage industrial collaborations, and oversee scientific platforms such as HydroVAL further demonstrates his strong organizational and strategic research capabilities. His extensive publication record and leadership in large research networks reflect both his technical proficiency and his commitment to advancing innovative and sustainable chemical processes.

Conclusion💡

Prof. Alexandre Chagnes is an exceptionally qualified candidate for the Best Researcher Award.
His consistent and impactful contributions to hydrometallurgy, battery recycling, and separation science—combined with his leadership in national and international scientific communities—underscore his suitability. He exemplifies the criteria of scientific excellence, innovation, leadership, and real-world impact. With minor improvements in global strategic collaboration and public-facing science initiatives, his profile would be near-ideal for even the most prestigious research honors.

Publications Top Noted✍

  • Title: Interphase chemistry of Si electrodes used as anodes in Li-ion batteries
    Authors: C. Pereira-Nabais, J. Światowska, A. Chagnes, F. Ozanam, A. Gohier, et al.
    Year: 2013
    Citations: 179

  • Title: Imidazolium-organic solvent mixtures as electrolytes for lithium batteries
    Authors: A. Chagnes, M. Diaw, B. Carré, P. Willmann, D. Lemordant
    Year: 2005
    Citations: 166

  • Title: Guidelines to design organic electrolytes for lithium-ion batteries: environmental impact, physicochemical and electrochemical properties
    Authors: B. Flamme, G.R. Garcia, M. Weil, M. Haddad, P. Phansavath, et al.
    Year: 2017
    Citations: 162

  • Title: XPS, XRD and SEM characterization of a thin ceria layer deposited onto graphite electrode for application in lithium-ion batteries
    Authors: J. Światowska, V. Lair, C. Pereira-Nabais, G. Cote, P. Marcus, A. Chagnes
    Year: 2011
    Citations: 144

  • Title: Modeling viscosity and conductivity of lithium salts in γ-butyrolactone
    Authors: A. Chagnes, B. Carré, P. Willmann, D. Lemordant
    Year: 2002
    Citations: 122

  • Title: Recent advances on electrodialysis for the recovery of lithium from primary and secondary resources
    Authors: S. Gmar, A. Chagnes
    Year: Not specified
    Citations: Not specified in the input

 

Dirk Guldi | Chemistry | Best Researcher Award  

Prof. Dr. Dirk Guldi | Chemistry | Best Researcher Award

Department of Chemistry and Pharmacy at Erlangen University, Germany

Prof. Dr. Dirk Michael Guldi is a globally renowned scientist and leader in physical chemistry, specializing in photon and charge management in molecules and nanomaterials. Currently holding a permanent C4/W3 professorship at Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), his career spans prestigious roles in Germany, the US, and beyond. With over three decades of interdisciplinary research, Prof. Guldi’s work focuses on advanced materials for solar energy conversion, integrating cutting-edge spectroscopy and microscopy techniques to optimize charge separation, transport, and recombination processes. He has supervised over 300 students and early-career researchers, fostering a diverse, collaborative, and internationally respected research group. Prof. Guldi serves in leadership roles across numerous scientific societies, editorial boards, and international collaborations. His extensive publication record, global impact, and numerous high-profile awards—including the Richard E. Smalley Research Award, Ziegler-Natta Award, and Lifetime Achievement Award—highlight his profound contributions to nanotechnology, photochemistry, and renewable energy research.

Professional Profile 

Education

Prof. Dr. Dirk Michael Guldi’s educational journey is rooted in a strong foundation in chemistry, which began at the University of Cologne in Germany. He completed his Diploma in Chemistry in 1988, followed by a doctorate (PhD) in 1990 under the supervision of Fritz Wagestian, focusing on inorganic chemistry. This early academic training provided him with a robust understanding of chemical principles, which he later combined with expertise in physical chemistry and nanotechnology. His postdoctoral experiences further enriched his educational background, including a fellowship at the National Institute of Standards and Technology (NIST) in the United States, where he worked on chemical kinetics and thermodynamics. Prof. Guldi’s diverse academic training across multiple disciplines—ranging from inorganic chemistry to physical chemistry and materials science—laid the groundwork for his future research excellence in photochemistry, nanomaterials, and energy conversion, establishing him as a globally recognized leader in interdisciplinary science.

Professional Experience

Prof. Dr. Dirk Michael Guldi has an extensive and distinguished professional career spanning over three decades, marked by leadership roles, groundbreaking research, and international collaborations. Currently, he serves as a C4/W3 Professor and Chair of Physical Chemistry at Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU) in Germany, a position he has held since 2004. Prior to this, he spent nearly a decade at the University of Notre Dame in the United States, progressing from Assistant Professional Specialist to Associate Professional Specialist and ultimately leading research at the Notre Dame Radiation Laboratory. His earlier career includes postdoctoral and research fellow positions at prestigious institutions such as the Hahn-Meitner-Institute in Berlin, the University of Syracuse, and the National Institute of Standards and Technology (NIST). Throughout his career, Prof. Guldi has built a reputation for pioneering interdisciplinary research in photochemistry, nanomaterials, and solar energy conversion, complemented by leadership in numerous editorial boards, scientific panels, and international research initiatives.

Research Interest

Prof. Dr. Dirk Michael Guldi’s research interests lie at the intersection of physical chemistry, nanotechnology, and renewable energy, with a primary focus on photon and charge management in advanced molecular and nanoscale materials. His work aims to design, synthesize, and characterize novel materials for applications in solar energy conversion and storage. Central to his research is understanding and optimizing processes such as charge separation, transport, and recombination at the molecular and nanoscale levels. Prof. Guldi’s interdisciplinary approach integrates organic synthesis, advanced spectroscopic techniques, and computational modeling to unravel fundamental mechanisms underlying energy conversion processes. He has a particular interest in carbon nanostructures, fullerenes, porphyrins, and molecular hybrids, which play critical roles in developing next-generation solar cells, photodetectors, and energy storage devices. His pioneering contributions to singlet fission, electron donor-acceptor interactions, and molecular electronics have earned him global recognition as a leading figure in energy materials research.

Award and Honor

Prof. Dr. Dirk Michael Guldi has received numerous prestigious awards and honors in recognition of his groundbreaking contributions to physical chemistry, nanotechnology, and energy research. His accolades include the Lifetime Achievement Award from the Society of Porphyrins and Phthalocyanines (2022) and the Masuhara Lectureship Award from the Asian Photochemistry Association (2020). He is an elected member of both the European Academy of Sciences (2020) and the EU Academy of Sciences (2016), reflecting his international scientific impact. Other notable awards include the Richard E. Smalley Research Award from the Electrochemical Society (2015), the Ziegler-Natta Award from the Italian Chemical Society (2018), and the I-APS Award in Photochemistry from the Inter-American Photochemical Society (2019). Additionally, he holds honorary positions, such as an Honorary Professorship at Xi’an Jiaotong University in China and an Honorary Doctorate from the University of Rome Tor Vergata. His lifetime achievements underscore his global leadership in photochemistry and energy research.

Research skill

Prof. Dr. Dirk Michael Guldi possesses an exceptional set of research skills that span across physical chemistry, nanotechnology, and advanced materials science. His expertise lies in the design, synthesis, and comprehensive characterization of molecular and nanoscale materials, with a particular focus on their photophysical and photochemical properties. Prof. Guldi is a global leader in studying electron transfer processes, charge separation dynamics, and energy conversion mechanisms in complex molecular systems, including carbon nanostructures, fullerenes, porphyrins, and hybrid materials. His research toolbox includes state-of-the-art spectroscopic techniques, such as ultrafast laser spectroscopy, time-resolved photoluminescence, and transient absorption spectroscopy, enabling him to unravel fundamental mechanisms governing photoinduced processes. Additionally, his collaborative and interdisciplinary approach fosters innovative solutions to challenges in solar energy conversion, molecular electronics, and photonic materials. Prof. Guldi’s analytical thinking, methodological rigor, and ability to integrate theory, synthesis, and characterization define his reputation as a highly skilled and innovative researcher.

Conclusion

Prof. Dirk Michael Guldi’s outstanding research record, leadership roles, mentoring contributions, and global recognition make him a highly suitable candidate for a Best Researcher Award. His influence spans basic science, applied research, academic leadership, and the mentoring of future generations of scientists.

While some enhancement in technology transfer, public engagement, and interdisciplinary policy work could further broaden his case, these are secondary to his clear strengths as a globally recognized leader in physical chemistry, nanoscience, and sustainable energy research.

Publications Top Noted

Title: Nanohoops Favour Light-Induced Energy Transfer over Charge Separation in Porphyrin/[10]CPP/Fullerene Rotaxanes
Authors: F. Schwer, S. Zank, M. Freiberger, D.M. Guldi, M. von Delius
Year: 2025
Citations: 0

Title: Improving Photocatalytic Hydrogen Generation via Polycitric Acid-based Carbon Nanodots
Authors: D. Langford, Y. Reva, Y. Bo, B. Jana, D.M. Guldi
Year: 2025
Citations: 0

Title: Deciphering the Energy Transfer Mechanism Across Metal Halide Perovskite-Phthalocyanine Interfaces
Authors: A. Cortés-Villena, A. Cadranel, K. Azizi, J. Pérez-Prieto, R.E. Galian
Year: 2025
Citations: 0

Title: Inverse design workflow discovers hole-transport materials tailored for perovskite solar cells
Authors: J. Wu, L. Torresi, M. Hu, P. Friederich, C.J. Brabec
Year: 2024
Citations: 4

Title: Tuning Interactions to Control Molecular Down Conversion in [2.2]Paracyclophane Bridged Oligo-Tetracenes
Authors: M.R. Rapp, R. Weiß, A.S. Wollny, D.M. Guldi, H.F. Bettinger
Year: 2024
Citations: 0

Title: Long-Lived Charge Carrier Photogeneration in a Cooperative Supramolecular Double-Cable Polymer
Authors: J. Joseph, J.A. Berrocal, N.M. Casellas, T. Torres, M. Garcia Iglesias
Year: 2024
Citations: 0

Title: Deep-Saddle-Shaped Nanographene Induced by Four Heptagons: Efficient Synthesis and Properties
Authors: B. Borrisov, G.M. Beneventi, Y. Fu, J. Ma, X. Feng
Year: 2024
Citations: 5

Title: Designing carbon dots for enhanced photo-catalysis: Challenges and opportunities
Authors: L. Zdrazil, A. Cadranel, M. Medved‘, R. Zbořil, D.M. Guldi
Year: 2024
Citations: 7

Title: Tartaric acid-derived chiral carbon nanodots for catalytic enantioselective ring-opening reactions of styrene oxide
Authors: X. Zhao, Y. Reva, B. Jana, D.M. Guldi, X. Chen
Year: 2024
Citations: 0

Title: Laterally π-Extensed Nitrogen-Doped Molecular Nanographenes – From Anti-Kasha Emission to Ping-Pong Energy Transfer Events
Authors: G.M. Beneventi, K. Schöll, B. Platzer, N. Jux, D.M. Guldi
Year: 2024
Citations: 1

Virendra Vikram Singh | Chemistry | Best Researcher Award

Dr. Virendra Vikram Singh | Chemistry | Best Researcher Award

Scientist E at University of North Texas, United States

Dr. Virendra Vikram Singh is a Scientist E at the Defence Research & Development Establishment (DRDE), Gwalior, under India’s Ministry of Defence. He has dedicated his career to advanced research in chemical detection, toxicant remediation, and NBC (Nuclear, Biological, and Chemical) defense technologies. With over 15 years of research experience, Dr. Singh has emerged as a distinguished scientist in the field of analytical chemistry, specializing in the application of nanomaterials for critical defense applications. His work includes developing electrochemical detection methodologies and innovative detoxification systems, which address significant security and safety needs. A prolific researcher, Dr. Singh has contributed to over 48 scientific publications with a high citation impact, underscoring his influence within the scientific community. His applied research has led to the development of vital products for defense, showcasing his commitment to national security through scientific innovation and practical solutions.

Professional Profile

Education

Dr. Singh’s academic journey is rooted in a strong background in analytical chemistry. He completed his Ph.D. in 2011 at Jiwaji University, Gwalior, where his thesis focused on electrochemical detection methodologies for toxic chemicals, setting the stage for his work in sensor development. Prior to his doctoral studies, he obtained an M.Sc. in Analytical Chemistry from Banaras Hindu University in 2006, achieving an impressive 81.4% in his studies. His academic rigor continued with a prestigious post-doctoral research opportunity at the University of California, San Diego, where he worked under Professor Joseph Wang from 2014 to 2015. During this post-doctoral tenure, Dr. Singh expanded his expertise in nanoengineered micromotors and detoxification technologies, cementing his skills in nanotechnology and its applications in chemical detection. His academic record highlights a strong foundation and commitment to research in applied chemistry and nanotechnology.

Professional Experience

Dr. Singh has built a progressive and impactful career in research, particularly within India’s DRDO at the DRDE in Gwalior. He began as a Junior Research Fellow in 2007 and has ascended through various ranks to his current designation as Scientist E. His research assignments have focused on NBC defense technologies, toxicant remediation, and protective textiles, each of which addresses pressing needs in defense and public safety. His tenure at DRDE has been marked by innovation, with his work on developing NBC protective suits and gas canisters. He has also held an international post-doctoral research position at the University of California, San Diego, where he honed his skills in micromotor detoxification technologies. With more than a decade of experience at DRDE, Dr. Singh’s professional trajectory exemplifies his dedication to scientific excellence and defense research.

Research Interest

Dr. Singh’s primary research interest lies in the development of detection and detoxification methodologies for toxic agents. His work encompasses diverse areas within nanobioelectronics, focusing on the use of nanostructures for electrochemical sensing devices. His research applies advanced materials, such as graphene, metal-organic frameworks, quantum dots, and molecularly imprinted polymers, to create sensors with applications in both clinical and environmental monitoring. Another significant aspect of his work involves the design and synthesis of nanomotors and nanoengineered micromotors for applications in energy generation and detoxification, showcasing a blend of fundamental science and applied research. Dr. Singh’s research continues to address critical challenges in chemical detection, environmental decontamination, and public safety, with an emphasis on developing technologies that serve defense and industrial applications.

Awarad and Honor

Dr. Singh’s contributions to science and defense have been recognized with numerous prestigious awards. Notable among them is the DRDO Young Scientist of the Year Award in 2013, which reflects his early career promise and impactful research. He received the ISCB Young Scientist Award in 2022 and the LNJ Award by the Indian Carbon Society in 2023, both underscoring his leadership in chemical sciences. Dr. Singh’s accomplishments have also been acknowledged internationally, with Stanford University listing him among the top 2% of scientists in 2020 and 2021. His work has earned several best paper awards for high-impact publications, including the Dr. P.K. Ramachandran Award in Chemical Sciences multiple times. His extensive recognition by both national and international bodies speaks to his reputation and influence within the scientific community.

Conclusion

Dr. Virendra Vikram Singh’s impressive research achievements, along with his substantial contributions to defense technologies and national security, make him a strong candidate for the Best Researcher Award. His work not only demonstrates scientific rigor and innovation but also aligns closely with strategic areas vital for national defense and public safety. While there is scope for broader environmental impact and international collaborations, Dr. Singh’s accomplishments thus far set him apart as a leading researcher whose work is of significant national and international importance. His contributions, awards, and sustained commitment to advancing science make him highly deserving of recognition as Best Researcher.

Publications Top Noted

  • Title: Water-driven micromotors for rapid photocatalytic degradation of biological and chemical warfare agents
    Authors: J. Li, V.V. Singh, S. Sattayasamitsathit, J. Orozco, K. Kaufmann, R. Dong, …
    Year: 2014
    Citation Count: 346
  • Title: Band gap determination in thick films from reflectance measurements
    Authors: V. Kumar, S.K. Sharma, T.P. Sharma, V. Singh
    Year: 1999
    Citation Count: 336
  • Title: Self‐propelled activated carbon Janus micromotors for efficient water purification
    Authors: B. Jurado‐Sánchez, S. Sattayasamitsathit, W. Gao, L. Santos, Y. Fedorak, …
    Year: 2015
    Citation Count: 295
  • Title: Greener electrochemical synthesis of high-quality graphene nanosheets directly from pencil and its SPR sensing application
    Authors: V.V. Singh, G. Gupta, A. Batra, A.K. Nigam, M. Boopathi, P.K. Gutch, B.K. Tripathi, …
    Year: 2012
    Citation Count: 176
  • Title: Lysozyme-based antibacterial nanomotors
    Authors: M. Kiristi, V.V. Singh, B. Esteban-Fernández de Ávila, M. Uygun, F. Soto, …
    Year: 2015
    Citation Count: 168
  • Title: Applications of ionic liquids in electrochemical sensors and biosensors
    Authors: V.V. Singh, A.K. Nigam, A. Batra, M. Boopathi, B. Singh, R. Vijayaraghavan
    Year: 2012
    Citation Count: 148
  • Title: Aptamer-modified graphene-based catalytic micromotors: Off–on fluorescent detection of ricin
    Authors: B. Esteban-Fernández de Ávila, M.A. Lopez-Ramirez, D.F. Báez, A. Jodra, …
    Year: 2016
    Citation Count: 141
  • Title: Multifunctional silver‐exchanged zeolite micromotors for catalytic detoxification of chemical and biological threats
    Authors: V.V. Singh, B. Jurado‐Sánchez, S. Sattayasamitsathit, J. Orozco, J. Li, …
    Year: 2015
    Citation Count: 136
  • Title: Nano/micromotors for security/defense applications. A review
    Authors: V.V. Singh, J. Wang
    Year: 2015
    Citation Count: 111
  • Title: Smart nanomaterials in cancer theranostics: challenges and opportunities
    Authors: B.K. Kashyap, V.V. Singh, M.K. Solanki, A. Kumar, J. Ruokolainen, K.K. Kesari
    Year: 2023
    Citation Count: 99
  • Title: Zirconia/graphene oxide hybrid micromotors for selective capture of nerve agents
    Authors: V.V. Singh, A. Martin, K. Kaufmann, S. D.S. de Oliveira, J. Wang
    Year: 2015
    Citation Count: 96
  • Title: Molybdenum Disulfide‐Based Tubular Microengines: Toward Biomedical Applications
    Authors: V.V. Singh, K. Kaufmann, B.E.F. de Ávila, E. Karshalev, J. Wang
    Year: 2016
    Citation Count: 92
  • Title: Micromotor-based on–off fluorescence detection of sarin and soman simulants
    Authors: V.V. Singh, K. Kaufmann, J. Orozco, J. Li, M. Galarnyk, G. Arya, J. Wang
    Year: 2015
    Citation Count: 87
  • Title: Micromotor‐based energy generation
    Authors: V.V. Singh, F. Soto, K. Kaufmann, J. Wang
    Year: 2015
    Citation Count: 86
  • Title: Ultrasound-propelled nanowire motors enhance asparaginase enzymatic activity against cancer cells
    Authors: M. Uygun, B. Jurado-Sanchez, D.A. Uygun, V.V. Singh, L. Zhang, J. Wang
    Year: 2017
    Citation Count: 73

Zafar Iqbal | Chemistry | Best Researcher Award

Prof. Dr. Zafar Iqbal | Chemistry | Best Researcher Award

Fulbright Scholar at University of North Texas, United States

Dr. Zafar Iqbal is a distinguished professor in Agricultural Chemistry and Biochemistry at the University of Agriculture, Peshawar, with an impressive academic and research portfolio. Holding a Ph.D. in Chemistry from the University of Bristol, he has conducted impactful research in natural product biosynthesis, particularly focusing on bioactive compounds with antimicrobial and cytotoxic properties. His work has led to 67 publications, an h-index of 17, and over 1,090 citations, underscoring his significant contributions to agricultural biochemistry. Dr. Iqbal has received prestigious fellowships, including the Fulbright and Endeavour awards, reflecting his international reputation. He has secured substantial research funding for projects on food safety, bioprocessing, and pathogen resistance, promoting advancements in sustainable agriculture. Additionally, his leadership roles as Department Head and Director of ORIC at his university demonstrate his commitment to fostering innovation and guiding research development. Dr. Iqbal’s expertise and dedication position him as a leading researcher in his field.

Professional Profile

Education

Prof. Dr. Zafar Iqbal completed his Ph.D. in Chemistry with a specialization in Natural Products Biosynthesis from the University of Bristol, United Kingdom, in 2011. His advanced studies equipped him with a strong foundation in organic chemistry and natural product research, enabling him to explore the biosynthetic pathways of various compounds. Following his doctoral studies, he furthered his academic career through various prestigious fellowships, including the Fulbright Visiting Scholar position at the University of North Texas in 2024-2025, where he collaborates on innovative research in chemistry. His educational journey reflects a commitment to high academic standards and research excellence. Dr. Iqbal has also been recognized as a Ph.D. supervisor by the Higher Education Commission of Pakistan and has been involved in numerous collaborative projects, enhancing his role as a mentor and educator within the scientific community. His educational background lays the groundwork for his impactful research in agricultural chemistry and biochemistry.

Professional Experience

Prof. Dr. Zafar Iqbal possesses extensive professional experience in academia and research, currently serving as a Professor in the Department of Agricultural Chemistry and Biochemistry at the University of Agriculture, Peshawar. He has held several significant positions, including Head of Department and Director of the Office of Research Innovation and Commercialization (ORIC), where he has spearheaded initiatives to enhance research capabilities and promote innovation within the institution. His tenure as an Associate Professor from 2018 to 2022 and as a tenured faculty member has established him as a key contributor to the university’s academic environment. Dr. Iqbal has also been an Endeavour Adjunct Research Fellow at Curtin University in Australia, collaborating on research projects that explore agricultural biochemistry. His ongoing role as a Fulbright Visiting Scholar at the University of North Texas showcases his commitment to international collaboration and knowledge exchange, further solidifying his position as a leading expert in his field.

Research Interest

Prof. Dr. Zafar Iqbal’s research interests primarily focus on agricultural chemistry and biochemistry, particularly the biosynthesis of natural products and their applications in sustainable agriculture. His work emphasizes the exploration of bioactive compounds derived from fungal sources, investigating their antimicrobial and cytotoxic properties to address challenges in crop protection and food safety. He is actively involved in projects aimed at developing innovative treatments and technologies for food ingredients, such as rice bran, and enhancing algal biomass production through bioprocessing techniques. Dr. Iqbal’s research also encompasses the assessment of mycotoxins as risk factors for food safety, contributing to vital knowledge in food chemistry and safety management. His commitment to integrating fundamental research with practical applications aims to promote sustainable agricultural practices and improve food security. Through his extensive publication record and collaborative projects, he strives to advance understanding in his field and address pressing agricultural challenges.

Awarad and Honor

Prof. Dr. Zafar Iqbal has received numerous prestigious awards and honors throughout his academic and research career, reflecting his significant contributions to the field of agricultural chemistry and biochemistry. In 2024, he was honored as a Fulbright Visiting Scholar, which highlights his international recognition and commitment to advancing research through collaborative efforts. His achievements also include the Endeavour Research Fellowship in 2016, allowing him to engage in valuable research partnerships in Australia. Dr. Iqbal has been recognized as an approved Ph.D. supervisor by the Higher Education Commission of Pakistan, underscoring his role in mentoring the next generation of researchers. Additionally, he received the Gold Medal Award for his outstanding performance during his B.Sc. studies at Gomal University. His accolades, including grants from national and international funding agencies, further illustrate his dedication to impactful research and innovation in agricultural sciences, positioning him as a leading figure in his discipline.

Conclusion

Dr. Zafar Iqbal is a highly suitable candidate for the Best Researcher Award, given his strong publication record, research funding achievements, and international collaborations. His contributions to agricultural biochemistry, coupled with leadership in academia, make him a prominent figure in his field. By further elevating his research’s visibility and exploring interdisciplinary areas, Dr. Iqbal has the potential to make even broader contributions to scientific research.

Publications Top Noted

  • Authors: R Hanif, Z Iqbal, M Iqbal, S Hanif, M Rasheed
    Year: 2006
    Title: Use of vegetables as nutritional food: role in human health
    Journal: Journal of Agricultural and Biological Science
    Volume: 1
    Issue: 1
    Pages: 18-22
    Citations: 356
  • Authors: R Nofiani, K de Mattos-Shipley, KE Lebe, LC Han, Z Iqbal, AM Bailey, …
    Year: 2018
    Title: Strobilurin biosynthesis in Basidiomycete fungi
    Journal: Nature Communications
    Volume: 9
    Issue: 1
    Pages: 3940
    Citations: 105
  • Authors: M Sajid, A Rab, F Wahid, SNM Shah, I Jan, MA Khan, SA Hussain, …
    Year: 2011
    Title: Influence of rhizobium inoculation on growth and yield of groundnut cultivars
    Journal: Sarhad J. Agric
    Volume: 27
    Issue: 4
    Pages: 573-576
    Citations: 65
  • Authors: F Naz, A Ali, Z Iqbal, N Akhtar, S Asghar, B Ahmad
    Year: 2011
    Title: Effect of different levels of NPK fertilizers on the proximate composition of potato crop at Abbottabad
    Journal: Sarhad J. Agric
    Volume: 27
    Issue: 3
    Pages: 353-356
    Citations: 57
  • Authors: S AMBREEN, Z IQBAL, M IQBAL, S AHMAD
    Year: 2016
    Title: Determinants of antenatal psychological distress in Pakistani women
    Journal: Nöro Psikiyatri Arşivi
    Volume: 53
    Issue: 2
    Pages: 152
    Citations: 44
  • Authors: S Hussain, M Sajid, S Alam, Z Iqbal
    Year: 2006
    Title: Response of okra (Abelmoschus esculentus) cultivars to different sowing times
    Journal: Journal of Agricultural and Biological Science
    Volume: Not available
    Pages: Not available
    Citations: 42
  • Authors: Z Iqbal, M Afzal, A Afzal, IU Rahman, B Ahmed, N Anjum, K Qureshi, …
    Year: 2014
    Title: In vitro antibacterial study of Taraxacum officinale leaves extracts against different bacterial pathogenic strains
    Journal: Journal of Pharmacognosy and Phytochemistry
    Volume: 3
    Issue: 2
    Pages: 15-17
    Citations: 41
  • Authors: J Hothersall, AC Murphy, Z Iqbal, G Campbell, ER Stephens, J Wu, …
    Year: 2011
    Title: Manipulation of quorum sensing regulation in Pseudomonas fluorescens NCIMB 10586 to increase mupirocin production
    Journal: Applied Microbiology and Biotechnology
    Volume: 90
    Pages: 1017-1026
    Citations: 29
  • Authors: H Bibi, M Iqbal, H Wahab, M Öztürk, F Ke, Z Iqbal, MI Khan, SM Alghanem
    Year: 2021
    Title: Green synthesis of multifunctional carbon coated copper oxide nanosheets and their photocatalytic and antibacterial activities
    Journal: Scientific Reports
    Volume: 11
    Issue: 1
    Pages: 10781
    Citations: 27
  • Authors: SS Naz, NU Islam, MR Shah, SS Alam, Z Iqbal, M Bertino, L Franzel, …
    Year: 2013
    Title: Enhanced biocidal activity of Au nanoparticles synthesized in one pot using 2, 4-dihydroxybenzene carbodithioic acid as a reducing and stabilizing agent
    Journal: Journal of Nanobiotechnology
    Volume: 11
    Pages: 1-9
    Citations: 27

Zahra Mardani | Chemistry | Best Researcher Award

Assoc. Prof. Dr. Zahra Mardani | Chemistry | Best Researcher Award

Urmia University, Iran

Associate Professor Dr. Zahra Mardani is a distinguished researcher in the Department of Organic and Inorganic Chemistry, known for her extensive contributions to the field, with 67 published journal articles. Her research primarily focuses on the interaction of metal complexes with biomolecules, employing innovative techniques such as molecular docking and multispectroscopic methods. Dr. Mardani’s work has significant implications for drug design and biological understanding, showcasing her expertise and impact within the scientific community. She actively collaborates with other researchers, reflecting her commitment to teamwork and knowledge advancement. In addition to her research, she engages in educational activities, contributing to the development of future scientists. Dr. Mardani’s ongoing dedication to excellence in research and education positions her as a leading figure in her discipline and a valuable asset to her academic institution. Her contributions highlight the intersection of chemistry and biomedicine, emphasizing her role in advancing scientific knowledge.

Professional Profile

Education

Associate Professor Dr. Zahra Mardani has a robust educational background that underpins her expertise in organic and inorganic chemistry. She earned her Ph.D. in Chemistry, where her research focused on the interactions of metal complexes with biological molecules, establishing a foundation for her subsequent work in the field. Her academic journey continued with a Bachelor’s and Master’s degree in Chemistry, during which she honed her skills in experimental techniques and theoretical approaches. Dr. Mardani has complemented her formal education with various professional development courses and workshops, enhancing her proficiency in modern analytical methods and computational chemistry. As an educator, she has been actively involved in mentoring students and fostering their research interests, reflecting her commitment to academic excellence. Her educational achievements and ongoing contributions to both research and teaching position her as a significant figure in her field, inspiring the next generation of chemists.

Professional Experience

Associate Professor Dr. Zahra Mardani has extensive professional experience in academia and research within the field of chemistry. Currently, she serves in the Department of Organic and Inorganic Chemistry, where she not only conducts innovative research but also teaches undergraduate and graduate courses. Her teaching focuses on advanced topics in organic and inorganic chemistry, nurturing students’ understanding and interest in the subject. Dr. Mardani has been involved in numerous research projects, leading investigations into the interactions of metal complexes with biomolecules, which has implications for drug design and molecular biology. She has collaborated with various researchers, contributing to 67 published articles in reputable scientific journals. Additionally, Dr. Mardani is active in academic committees, participating in curriculum development and peer reviews, and mentoring graduate students in their research endeavors. Her diverse professional experience reflects her commitment to advancing scientific knowledge and education in chemistry.

Research Interest

Associate Professor Dr. Zahra Mardani’s research interests lie at the intersection of organic and inorganic chemistry, focusing primarily on the synthesis and characterization of metal complexes and their interactions with biological molecules. Her work explores the binding mechanisms of various metal ions, including cobalt and zinc, to biomolecules such as human serum albumin and DNA, employing techniques like molecular docking and multispectroscopic analysis. Dr. Mardani is particularly interested in the development of novel ligands and metal complexes that can serve therapeutic roles, contributing to advancements in drug design and biomolecular applications. Her research also includes investigating the physicochemical properties of these complexes, enhancing the understanding of their biological functions. Through her innovative approaches and interdisciplinary collaborations, she aims to address critical challenges in biochemistry and medicinal chemistry, ultimately contributing to the fields of drug discovery and molecular biology. Dr. Mardani’s research exemplifies her commitment to advancing scientific knowledge in her area of expertise.

Awarad and Honor

Associate Professor Dr. Zahra Mardani has received several awards and honors in recognition of her exceptional contributions to the field of chemistry. Her scholarly achievements include being honored with research grants from esteemed institutions, allowing her to advance her innovative projects in organic and inorganic chemistry. Dr. Mardani has also been acknowledged for her high-impact publications, with several articles recognized as influential in advancing knowledge about metal complexes and their interactions with biological systems. Her commitment to education and mentorship has earned her accolades within her academic institution, where she is celebrated for inspiring students and fostering a passion for scientific inquiry. Additionally, Dr. Mardani actively participates in national and international conferences, receiving accolades for her presentations and contributions to the scientific community. These honors reflect her dedication to research excellence, teaching, and collaboration, solidifying her reputation as a leading figure in her field and an advocate for scientific advancement.

Conclusion

Zahra Mardani is a strong candidate for the Best Researcher Award due to her extensive publication record, high-impact research, and collaborative efforts. Her work has significant implications in organic and inorganic chemistry, particularly in the interactions of metal complexes with biological molecules. By addressing areas for improvement, such as fostering interdisciplinary collaborations and enhancing her outreach efforts, she can further solidify her position as a leading researcher in her field. Overall, her achievements and potential make her an excellent nominee for this prestigious award.

Publications Top Noted

  • Title: Synthesis and characterization of selective upper rim di-formylation and lower rim di-butylation of a p-t-butyl-calix[4]arene to evaluate its binding ability along with some analogues toward DNA and proteins
    Authors: Shokrzadeh, M., Dilmaghani, K.A., Mardani, Z.
    Year: 2024
    Citations: 1
  • Title: Investigation of optical properties of choline chloride-lactic acid deep eutectic solvent under continuous wave laser irradiation regime
    Authors: Karimarji, S., Khorsandi, A., Azimi, G., Mardani, Z.
    Year: 2024
    Citations: 2
  • Title: Interaction studies of water-soluble Zn(II) complex with calf thymus DNA using biophysical and molecular docking methods
    Authors: Shahabadi, N., Ghaffari, L., Mardani, Z., Shiri, F.
    Year: 2024
    Citations: 0
  • Title: Analysis of the binding mechanism for a water-soluble Pd(II) complex containing β-amino alcohols with HSA applying experimental and computational methods
    Authors: Shahabadi, N., Ghaffari, L., Mardani, Z., Hadidi, S.
    Year: 2024
    Citations: 1
  • Title: Interaction of a cobalt(III) complex containing β-amino alcohol with human serum albumin (HSA): Spectroscopic and molecular docking methods
    Authors: Shahabadi, N., Hadidi, S., Abdoli, Z., Mardani, Z.
    Year: 2023
    Citations: 9
  • Title: Design and simulation of refractive index sensor based on suspended composite hybrid plasmonic waveguide for sensing mass density of polarizable hydrogen gas
    Authors: Moeinimaleki, B., Moeinimaleki, K., Mardani, Z., Karamzadeh, S.
    Year: 2023
    Citations: 3
  • Title: Spectroscopic and molecular docking investigation on the interaction of a water-soluble Cu(II) complex containing diethanolamine and dipicolinic acid ligands with human serum albumin
    Authors: Shahabadi, N., Marzbani, A., Hadidi, S., Mardani, Z.
    Year: 2023
    Citations: 0
  • Title: DNA interaction studies of a cobalt(III) complex containing β–amino alcohol ligand by spectroscopic and molecular docking methods
    Authors: Shahabadi, N., Abdoli, Z., Mardani, Z., Shiri, F., Soltani, L.
    Year: 2023
    Citations: 1
  • Title: Evaluation of biological activities of cobalt(II) and copper(II) complexes synthesized from methylcarboxylate and amino alcohol ligand mixtures: spectroscopic, structural and docking studies
    Authors: Esmaeilzadeh, J., Mardani, Z., Golsanamlou, V., Moeini, K., Krautscheid, H.
    Year: 2023
    Citations: 0
  • Title: Multi-Spectroscopic and Theoretical Analyses of Human Serum Albumin Binding to a Water-Soluble Zinc(II) Complex including β-Amino Alcohol
    Authors: Shahabadi, N., Ghaffari, L., Mardani, Z., Shiri, F.
    Year: 2022
    Citations: 1

Doaa Saied | Chemistry | Excellence in Research

Assoc Prof Dr. Doaa Saied | Chemistry | Excellence in Research

Associate professor at Faculty of science, Egypt

Doaa Saied El Sayed is an associate professor at Alexandria University, specializing in inorganic and computational chemistry. With a Ph.D. focused on the electronic structure of heterocyclic ligands and their complexes, she has made significant contributions to the field through her research and numerous publications. Doaa is passionate about teaching, employing engaging methods to encourage student exploration and critical thinking. Her extensive experience includes supervising Master’s and Ph.D. students, reflecting her commitment to nurturing future chemists. She has authored multiple articles on topics such as corrosion inhibitors and molecular docking, showcasing her interdisciplinary approach. While her research is impactful, enhancing public engagement and seeking broader collaboration could further elevate her work. Overall, Doaa’s expertise and dedication to both research and education position her as a prominent figure in her field, making her a strong candidate for recognition in Excellence in Research.

Professional Profile

Education

Doaa Saied El Sayed holds a robust educational background in chemistry, underscoring her expertise in inorganic and computational chemistry. She earned her Ph.D. from Alexandria University in July 2016, focusing on the computations of the electronic structure of heterocyclic ligands and their complexes with transition metals using quantum chemical methods. Prior to her doctoral studies, Doaa completed her Master’s degree at Alexandria University in September 2012, where her thesis explored the analytical approach to corrosion inhibition. Her academic journey began with a Bachelor of Science in Special Chemistry, which she obtained in January 2006. In September 2022, she further advanced her qualifications by obtaining an Associate in Science degree in inorganic and computational chemistry from Alexandria University. This comprehensive educational foundation has equipped Doaa with the theoretical knowledge and practical skills essential for her teaching and research endeavors in the field of chemistry.

Professional Experience

Doaa Saied El Sayed has a distinguished professional career in academia, primarily at Alexandria University, where she has held various teaching and research positions. Starting as a demonstrator in January 2006, she progressed to assistant lecturer by January 2012, focusing on assisting in teaching and research in the Department of Chemistry. In September 2022, she was promoted to associate professor, where she now leads courses and oversees research initiatives in her field. Throughout her tenure, Doaa has actively engaged with students, fostering a collaborative learning environment that encourages deeper exploration of chemistry topics. Her teaching methods emphasize critical thinking and practical application, benefiting both undergraduate and graduate students. Additionally, she has supervised numerous Master’s and Ph.D. candidates, contributing to their academic and professional development. This extensive experience underscores her commitment to education and research in inorganic and computational chemistry, positioning her as a respected figure in her field.

Research Interest

Doaa Saied El Sayed’s research interests lie primarily in inorganic and computational chemistry, with a strong focus on the electronic structure of materials and drug design. Her work involves using quantum chemical methods to investigate heterocyclic ligands and their complexes with transition metals, aiming to understand their properties and potential applications. Doaa has extensively researched corrosion inhibitors, exploring the design and synthesis of effective molecules through computational techniques. Additionally, her studies on molecular docking and the antimicrobial activity of various compounds highlight her commitment to addressing real-world challenges, particularly in the fields of environmental chemistry and pharmaceuticals. She also engages in 3D quantitative structure-activity relationship (QSAR) studies to develop eco-friendly inhibitors and assess the antiviral potential of compounds against SARS-CoV-2. Overall, her interdisciplinary approach combines theoretical modeling with experimental validation, contributing valuable insights to the advancement of materials science and medicinal chemistry.

Awarad and Honor

Doaa Saied El Sayed has garnered recognition for her contributions to the fields of inorganic and computational chemistry through various awards and honors. Her research, particularly in the development of corrosion inhibitors and the application of quantum chemical methods, has been acknowledged in several reputable scientific journals, showcasing her commitment to advancing knowledge in her field. Doaa’s publications have made significant impacts, contributing to her reputation as an expert in computational chemistry and drug design. Additionally, her role in supervising Master’s and Ph.D. students has positioned her as a mentor and leader within the academic community, earning her respect from colleagues and students alike. While specific awards are not detailed in the provided information, her consistent contributions to research and education suggest that she is well-regarded in her institution and the broader scientific community. Doaa’s dedication to both her research and teaching further underscores her potential for future recognition and honors.

Conclusion

Doaa Saied El Sayed exhibits a strong profile for the Excellence in Research award, demonstrating significant academic and research accomplishments in inorganic and computational chemistry. Her strengths in teaching, mentoring, and research publication are commendable and position her as a leader in her field. By addressing the areas for improvement, particularly in enhancing the impact and outreach of her research, Doaa can further elevate her contributions to the scientific community. Overall, her dedication and expertise make her a suitable candidate for this prestigious award.

Publications Top Noted

  • El-Sayed, D.S., Sinha, L., Soayed, A.A.
    Year: 2024
    Title: Experimental and theoretical quantum chemical studies of 2-(2-acetamidophenyl)-2-oxo-N-(pyridin-2-ylmethyl)acetamide and its copper(II) complex: molecular docking simulation of the designed coordinated ligand with insulin-like growth factor-1 receptor (IGF-1R)
    Journal: BMC Chemistry
    Citation Count: 0
  • Ibraheem, H.H., Issa, A.A., El-Sayed, D.S.
    Year: 2024
    Title: Structural behavior and surface layer modification of (E)-N’-((1H-indol-3-yl)methylene)-4-chlorobenzohydrazide: Spectroscopic, DFT, biomedical activity and molecular dynamic simulation against Candida Albicans receptor
    Journal: Journal of Molecular Structure
    Citation Count: 1
  • El Sayed, D.S., Khalil, T.E., Elbadawy, H.A.
    Year: 2024
    Title: Rational and experimental investigation of antihypotensive midodrine-Fe(III) complex: Synthesis, spectroscopy, DFT, biological activity and molecular docking
    Journal: Journal of Molecular Structure
    Citation Count: 3
  • Mahmood, W.K., Dakhal, G.Y., Younus, D., Issa, A.A., El-Sayed, D.S.
    Year: 2024
    Title: Comparative properties of ZnO modified Au/Fe nanocomposite: electronic, dynamic, and locator annealing investigation
    Journal: Journal of Molecular Modeling
    Citation Count: 3
  • Issa, A.A., Kamel, M.D., El-Sayed, D.S.
    Year: 2024
    Title: Depicted simulation model for removal of second-generation antipsychotic drugs adsorbed on Zn-MOF: adsorption locator assessment
    Journal: Journal of Molecular Modeling
    Citation Count: 3
  • Elessawy, N.A., Exley, J., El-Sayed, D.S., et al.
    Year: 2024
    Title: Development of an efficient, low-operating-pressure graphene oxide/polyethersulfone nanofiltration membrane for removing various water contaminants
    Journal: Journal of Environmental Chemical Engineering
    Citation Count: 3
  • Issa, A.A., Ibraheem, H.H., El-Sayed, D.S.
    Year: 2024
    Title: Computational innovation of in situ metallic elements with zirconia as a novel possible carrier for chemotherapeutic medication
    Journal: Journal of Molecular Modeling
    Citation Count: 8
  • El-Sayed, D.S., Tawfik, E.M., Elhusseiny, A.F., El-Dissouky, A.
    Year: 2023
    Title: A perception into binary and ternary copper (II) complexes: synthesis, characterization, DFT modeling, antimicrobial activity, protein binding screen, and amino acid interaction
    Journal: BMC Chemistry
    Citation Count: 7
  • Emara, M.M., Hafez, S.T., Khalil, T.E., et al., El-Sayed, D.S.
    Year: 2023
    Title: Electronic and structural perturbations of microporous ZIF-67 nanoparticles and Cr(VI) molecule during adsorptive water decontamination unveiled by experimental and quantum computational investigations
    Journal: Journal of Molecular Liquids
    Citation Count: 6
  • Hassan, M.A., Elmageed, G.M.A., El-Qazaz, I.G., et al., El-Samad, L.M., Abdou, H.M., El-Sayed, D.S.
    Year: 2023
    Title: The Synergistic Influence of Polyflavonoids from Citrus aurantifolia on Diabetes Treatment and Their Modulation of the PI3K/AKT/FOXO1 Signaling Pathways: Molecular Docking Analyses and In Vivo Investigations
    Journal: Pharmaceutics
    Citation Count: 8

Sepideh Khoee | Polymer Chemistry | Best Researcher Award

🌟 Prof Dr. Sepideh Khoee, University of Tehran, Iran: Polymer Chemistry🏆

Professional Profiles:

Bio Summary:

Dr. Sepideh Khoee is a highly accomplished polymer chemist and professor at the University of Tehran, Iran. She earned her Ph.D. in polymer chemistry from Isfahan University of Technology in 2002, following an M.Sc. in organic chemistry and a B.Sc. in chemistry from Isfahan University. With a focus on nanotechnology and drug delivery, Dr. Khoee has made substantial contributions to her field, earning her international recognition and several prestigious awards.

Education:

  • Ph.D. in Polymer Chemistry, Isfahan University of Technology, 2002
  • M.Sc. in Organic Chemistry, Isfahan University, 1994
  • B.Sc. in Chemistry, Isfahan University, 1990

Research Focus:

  • Synthesis of micro/nanomotors
  • Synthesis of linear and branched copolymers
  • Synthesis of drug-loaded nanopolymers for drug delivery investigations

Professional Journey:

  • Professor, Department of Polymer Chemistry, University of Tehran (2013-present)
  • Visiting Associate Professor, Department of Materials Science and Engineering, Lehigh University, USA (2009-2010)
  • Associate Professor, Department of Polymer Chemistry, University of Tehran (2008-2013)
  • Assistant Professor, Department of Polymer Chemistry, University of Tehran (2003-2008)

Honors & Awards:

  • Maryam Mirzakhani Award at the 4th National Festival of Women and Science (2021)
  • COMSTECH Patent Award (2019)
  • Distinguished Researcher of Chemistry, University of Tehran Research Week (2018, 2015)
  • Outstanding Researcher, 7th Iran Nano Festival (NanoMatch, 2013)

Publications Top Noted & Contributions:

  • Author of several book chapters on nanotechnology and drug delivery
  • Notable works include chapters on medicinal plant-based terpenoids, reversible core–shell crosslinked micelles, and Janus nanoparticles in drug delivery

Title: “Use of NIR/NaBH4 Combinatorial Techniques for Simultaneous and High-Efficient Adsorption of Heavy Metal Ions from Contaminated Water by Chitosan/Au Janus Microdisks”

  • Journal: Surfaces and Interfaces
  • Publication Date: December 2023
  • DOI: 10.1016/j.surfin.2023.103801
  • Source: Crossref
  • Summary: This study explores the application of NIR (Near-Infrared) and NaBH4 combinatorial techniques for the simultaneous and efficient adsorption of heavy metal ions from contaminated water. The adsorption is facilitated by Chitosan/Au Janus Microdisks.

Title: “Magnetite‐Based Janus Nanoparticles, Their Synthesis and Biomedical Applications”

  • Journal: WIREs Nanomedicine and Nanobiotechnology
  • Publication Date: November 2023
  • DOI: 10.1002/wnan.1908
  • Source: Crossref
  • Summary: This article focuses on the synthesis of Magnetite-based Janus Nanoparticles and explores their potential biomedical applications.

Title: “Tuning the Motion Velocity of Enzyme-Driven Dextran/Polyacrylamide Janus Nanomotors by Incorporating the Thermo-Switchable PNIPAM Moieties in Their Structure”

  • Journal: European Polymer Journal
  • Publication Date: July 2023
  • DOI: 10.1016/j.eurpolymj.2023.112113
  • Source: Crossref
  • Summary: This research investigates the modulation of motion velocity in enzyme-driven Dextran/Polyacrylamide Janus Nanomotors through the incorporation of thermo-switchable PNIPAM moieties.

Title: “Dual-Drug Delivery by Anisotropic and Uniform Hybrid Nanostructures: A Comparative Study of the Function and Substrate–Drug Interaction Properties”

  • Journal: Pharmaceutics
  • Publication Date: April 11, 2023
  • DOI: 10.3390/pharmaceutics15041214
  • Source: Crossref
  • Summary: This study presents a comparative analysis of dual-drug delivery using anisotropic and uniform hybrid nanostructures, exploring their function and substrate-drug interaction properties.

Title: “The Simultaneous Role of Porphyrins’ H- and J- Aggregates and Host–Guest Chemistry on the Fabrication of Reversible Dextran-PMMA Polymersome”

  • Journal: Scientific Reports
  • Publication Date: December 2021
  • DOI: 10.1038/s41598-021-82256-7
  • Source: Crossref
  • Summary: This article explores the simultaneous roles of porphyrins’ H- and J-aggregates and host–guest chemistry in the fabrication of reversible Dextran-PMMA polymersomes.

These publications showcase Dr. Sepideh Khoee’s diverse research interests, spanning from environmental applications to biomedical nanotechnology and drug delivery. Her work reflects a multidisciplinary approach with a focus on innovative materials and techniques.

Author Metrics:

  • Holds a patent: “Synthesizing Nanocapsules Containing Reactive Amine” (US Patent 20,150,307,649)
  • Recognized for significant contributions to the field with awards such as the COMSTECH Patent Award and the Maryam Mirzakhani Award
  • Citations: 3,332 citations across 2,636 documents
  • Documents: 143
  • h-index: 36

Research Timeline:

  • 1996-2002: Ph.D. in polymer chemistry
  • 2003-2008: Assistant Professor, Department of Polymer Chemistry, University of Tehran
  • 2008-2013: Associate Professor, Department of Polymer Chemistry, University of Tehran
  • 2009-2010: Visiting Associate Professor, Lehigh University, USA
  • 2013-present: Professor, Department of Polymer Chemistry, University of Tehran

Dr. Khoee’s research journey reflects a commitment to advancing polymer chemistry, nanotechnology, and drug delivery, earning her accolades and recognition both nationally and internationally.