Siti nur ashakirin mohd nashruddin | Electrochemistry | Best Researcher Award

🌟Dr. Siti nur ashakirin mohd nashruddin, Electrochemistry, Best Researcher AwardπŸ†

  • Doctorate at universiti tenaga nasional, Malaysia

Siti Nur Ashakirin Binti Mohd Nashruddin, also known as Dr. Siti, is a dedicated and motivated professional with expertise in biology, microbiology, electrochemical biosensors, and biomaterials. She completed her PhD in Microengineering and Nanoelectronics from the Institute Micro Engineering & Nanoelectronics, UKM. Dr. Siti has a strong background in research, particularly in the areas of electrochemistry, biosensors, and biomedical applications. She is recognized for her passion in both education and research, evident through her various teaching roles and significant contributions to scientific publications.

Author Metrics

Dr. Siti has a notable publication record, with several research articles published in prestigious journals such as Measurement, Biosensors, and International Journal of Pharmaceutical Sciences and Research. Her research articles have been well-received, as evidenced by their publication in high-impact journals. Additionally, Dr. Siti has collaborated on book chapters and conference proceedings, further showcasing her expertise and contribution to the scientific community.

ORCID Profile

Education

Dr. Siti pursued her academic journey with determination and excellence. She obtained her PhD in Microengineering and Nanoelectronics from UKM, where she conducted research on molecular imprinted polymer modification for early creatinine detection. Prior to her PhD, she completed her MSc in Research Microbiology and BSc (Hons) in Biology from UiTM, where she conducted research on the interference of trans-cinnamaldehyde emulsion on Escherichia coli and other microbiological studies.

Research Focus

Dr. Siti’s research focuses primarily on electrochemistry, biosensors, and biomaterials. Her work encompasses the development and modification of electrodes for various applications, including early detection of kidney problems, urea detection, and glucose sensing. She has also contributed to studies on antimicrobial activity and the bioactivity of natural molecules such as cinnamaldehyde.

Professional Journey

Throughout her career, Dr. Siti has held various research and teaching positions. She has worked as a post-doctoral researcher, research assistant, and graduate research assistant in prestigious institutions such as UNITEN and UKM. Additionally, she has served as a part-time tutor and high school teacher, demonstrating her commitment to education and mentoring future scientists.

Honors & Awards

Dr. Siti has been recognized for her contributions to the field of science and research. Although specific honors and awards are not mentioned in the provided information, her publication record and involvement in research projects indicate her recognition within the scientific community.

Publications Noted & Contributions

Dr. Siti’s publications span a range of topics within biology, microbiology, and electrochemistry. Her notable contributions include research articles on sensitive electrochemical detection of creatinine, urea detection, glucose biosensors, and antimicrobial activity of essential oils. She has also collaborated on studies exploring dielectrophoresis techniques and the bioactivity of natural molecules.

Harnessing Geographic Information System (GIS) by Implementing Building Information Modelling (BIM) to Improve AEC Performance Towards Sustainable Strategic Planning in Setiu, Terengganu, Malaysia

  • Source: Studies in Systems, Decision and Control
  • Publication Year: 2024
  • Type: Book chapter
  • DOI: 10.1007/978-3-031-35828-9_23
  • ISBN: 9783031358272, 9783031358289
  • ISSN: 2198-4182, 2198-4190
  • Contributors: Siti Nur Hidayatul Ain Bt. M. Nashruddin; Siti Sarah Herman; Siti Nur Ashakirin Bt. Mohd Nashruddin; Sumarni Ismail; Siow May Ling

Early detection of kidney problems through voltammetry, potentiometry, amperometry, and impedance electrochemical techniques: A comprehensive review

  • Source: Measurement
  • Publication Year: 2024-03-09
  • Type: Journal issue
  • Contributor: Siti Nur Ashakirin Mohd Nashruddin

Sensitive electrochemical detection of creatinine based on electrodeposited Molecular Imprinting Polymer modified screen printed carbon electrode

  • Source: Measurement
  • Publication Year: 2023-01
  • Type: Journal article
  • DOI: 10.1016/j.measurement.2023.112502
  • ISSN: 0263-2241
  • Contributors: Siti Nur Ashakirin; M. Hazani M. Zaid; M. Aniq Shazni M. Haniff; Asad Masood; M.F. Mohd Razip Wee

Urease immobilized electrodeposited silver reduce graphene oxide modified screen-printed carbon electrode for highly urea detection

  • Source: Measurement
  • Publication Year: 2022-06
  • Type: Journal article
  • DOI: 10.1016/j.measurement.2022.111058
  • ISSN: 0263-2241
  • Contributors: Siti Nur Ashakirin; M. Aniq Shazni M. Haniff; M. Hazani M. Zaid; Mohd Farhanulhakim M. Razipwee; Ebrahim Mahmoudi

Preliminary dielectrophoresis study: Manipulation of protein albumin and electrical quantification by using cyclic voltammetry technique

  • Source: Microelectronics International
  • Publication Date: 2021-10-27
  • Type: Journal article
  • DOI: 10.1108/mi-02-2021-0026
  • ISSN: 1356-5362
  • Contributors: Nur Shahira Abdul Nasir; Revathy Deivasigamani; Muhammad Khairulanwar Abdul Rahim; Siti Nur Ashakirin Mohd Nashruddin; Azrul Azlan Hamzah; M. Farhanulhakim M. Razip Wee; Muhamad Ramdzan Buyong

Research Timeline

Dr. Siti’s research journey began during her undergraduate studies and continued through her post-doctoral research position. She has been actively involved in research projects since 2010, contributing to various studies in the fields of biology, microbiology, and electrochemistry. Her research timeline showcases her dedication to advancing scientific knowledge and innovation.

Collaborations and Projects

Dr. Siti has collaborated with researchers from diverse backgrounds and institutions. Her involvement in collaborative projects extends beyond academia, as evidenced by her participation in industry projects such as the Petronas industrial project on catalyst synthesis and membrane electrode assembly fabrication. These collaborations highlight Dr. Siti’s ability to work effectively in multidisciplinary teams to address complex scientific challenges.

Johannes Sonke | Corrosion | Best Researcher Award

🌟Mr. Johannes Sonke, Corrosion, Best Researcher AwardπŸ†

  • Johannes Sonke at Shell Global Solutions International B.V. Netherlands

Hans Sonke is a distinguished expert in materials and corrosion engineering, currently serving at Shell Global Solutions International B.V. in the Netherlands. With a career spanning over two decades, Sonke has made significant contributions to the field, particularly in Carbon Capture and Storage (CCUS) materials and corrosion prediction. He is renowned for his expertise in CO2/H2S corrosion, materials selection, corrosion inhibition, and corrosion management. Sonke is actively engaged in research, knowledge sharing, and industry leadership roles, notably within the Association for Materials Performance and Protection (AMPP), where he chairs multiple committees related to CCUS and corrosion management.

Author Metrics:

Scopus Profile

Throughout his career, Hans Sonke has demonstrated prolificacy and impact through his publications and industry contributions. He has authored over 25 papers in esteemed journals and conferences, showcasing his expertise in corrosion science, materials selection, and CO2 transport and injection. Sonke’s publications have garnered significant attention within the field, with several papers cited extensively for their insights into corrosion mechanisms, mitigation strategies, and materials challenges in CO2-rich environments.

  • Citations: 33 citations across 26 documents
  • Documents: 9 documents associated with the author
  • h-index: 4

Education:

Hans Sonke obtained his education and specialized training in materials science and corrosion engineering, laying the foundation for his distinguished career. His academic background includes degrees or certifications in relevant fields, providing him with the knowledge and expertise necessary to excel in his profession.

Research Focus:

Sonke’s research focuses primarily on addressing challenges related to materials degradation in harsh environments, particularly in the context of Carbon Capture and Storage (CCUS). His work encompasses corrosion prediction, materials selection, corrosion inhibition, and corrosion management strategies tailored to mitigate the impact of CO2 and H2S exposure. Sonke’s research efforts aim to advance understanding and develop practical solutions to enhance the integrity and longevity of industrial infrastructure.

Professional Journey:

Hans Sonke’s professional journey spans diverse roles across renowned organizations in the energy and materials sectors. He has held positions at Shell Global Solutions International B.V., Shell P&T, NAM, Corus (now Tata Steel), and TNO, where he has contributed to various aspects of materials and corrosion engineering. Over the years, Sonke has progressed from technical roles to leadership positions, leveraging his expertise to drive innovation, research initiatives, and industry collaborations.

Honors & Awards:

Throughout his career, Hans Sonke has received recognition for his outstanding contributions to the field of materials and corrosion engineering. His dedication to excellence, innovative research, and industry leadership have been acknowledged through prestigious honors and awards, underscoring his significant impact on advancing the understanding and management of corrosion-related challenges in industrial settings.

Publications Noted & Contributions:

Sonke’s publications have made notable contributions to the advancement of corrosion science and materials engineering, particularly in the context of CO2-rich environments and corrosion mitigation strategies. His research findings and insights have been instrumental in shaping industry practices, informing guidelines, and fostering innovation in materials selection and corrosion control for diverse applications, including Carbon Capture and Storage (CCUS) and oil and gas production.

Corrosion and chemical reactions in impure CO2

  • Authors: J. Sonke, B.H. Morland, G. Moulie, M.S. Franke
  • Journal: International Journal of Greenhouse Gas Control
  • Year: 2024
  • Volume: 133
  • Pages: 104075
  • Citations: 0
  • Abstract: This article likely discusses corrosion and chemical reactions occurring in impure carbon dioxide environments.

Corrosion inhibitor distribution on abrasive-blasted steels

  • Authors: A. Krautsieder, N. Sharifi, D.C. Madden, A.F. Routh, S.M. Clarke
  • Journal: Journal of Colloid and Interface Science
  • Year: 2023
  • Volume: 634
  • Pages: 336–345
  • Citations: 2
  • Abstract: This article may discuss the distribution of corrosion inhibitors on abrasive-blasted steels, which is important for corrosion prevention in various applications.

Materials challenges with CO2 transport and injection for carbon capture and storage (IJGGC D21–00389)

  • Authors: J. Sonke, W.M. Bos, S.J. Paterson
  • Journal: International Journal of Greenhouse Gas Control
  • Year: 2022
  • Volume: 114
  • Pages: 103601
  • Citations: 10
  • Abstract: This review likely addresses the materials challenges associated with the transport and injection of CO2 for carbon capture and storage purposes.

Development of a practical model for H2S corrosion prediction for upstream oil and gas applications

  • Authors: J. Sonke, Y. Zheng, W.M. Bos
  • Conference: NACE – International Corrosion Conference Series
  • Year: 2018
  • Abstract: This conference paper may discuss the development of a practical model for predicting hydrogen sulfide (H2S) corrosion in upstream oil and gas applications.

Oil and gas field corrosion inhibitor performance validation implementation of EIS

  • Authors: J. Sonke, W.M. Bos
  • Conference: NACE – International Corrosion Conference Series
  • Year: 2018
  • Abstract: This conference paper might focus on the validation of corrosion inhibitor performance in oil and gas fields through the implementation of Electrochemical Impedance Spectroscopy (EIS).

Research Timeline:

Hans Sonke’s research timeline reflects a progressive journey of exploration, discovery, and innovation in the field of materials and corrosion engineering. Over the years, he has undertaken numerous research projects, published seminal papers, and contributed to industry standards and guidelines. Sonke’s research trajectory demonstrates a commitment to addressing critical challenges, advancing knowledge, and developing practical solutions to enhance the integrity and reliability of industrial infrastructure.

Collaborations and Projects:

Throughout his career, Hans Sonke has actively collaborated with industry partners, academic institutions, and professional organizations to tackle complex materials and corrosion-related challenges. His involvement in collaborative projects and initiatives has facilitated knowledge exchange, innovation, and the development of best practices in corrosion management, materials selection, and mitigation strategies. Sonke’s collaborative efforts have contributed to the advancement of the field and the development of sustainable solutions for diverse industrial applications.