Yao Ni | Electronic Engineering | Editorial Board Member

Dr. Yao Ni | Electronic Engineering | Editorial Board Member

Researcher | Guangdong University of Technology | China

Yao Ni is a distinguished researcher specializing in neuromorphic engineering, flexible electronics, artificial synapses, and advanced transistor technologies, with a strong focus on bridging biological intelligence and next-generation electronic systems. His research centers on developing neuromorphic devices, artificial nervous systems, and multifunctional sensing transistors that emulate cognitive, sensory, and neuromuscular behaviors, along with emerging interests in multi-scale reservoir computing, optoelectronic neural interfaces, and intelligent sensing systems for real-world decision-making. Currently serving as a Lecturer at the Guangdong University of Technology, he plays a vital role in advancing research on bio-inspired electronics and smart materials. His work experience showcases numerous collaborations on high-impact projects involving flexible neuromorphic transistors, artificial autonomic nervous systems, light-assisted learning devices, and complex synaptic architectures with multiscale plasticity. Over the years, Ni has significantly contributed to innovations in artificial synapses, hybrid neuromorphic platforms, and ion–electron coupled mechanisms that support advanced forms of memory, perception, and cognitive processing in artificial systems. His impactful research outputs include pioneering stretchable neuromorphic systems for gesture recognition, fiber-based neuromorphic pathways for reflex simulations, programmable photonic-electronic synapses, and neuromuscular devices capable of adaptive environmental responses. He has also contributed to highly cited works in Nature Communications, Advanced Functional Materials, Advanced Science, ACS Nano, and IEEE Electron Device Letters, reflecting his leadership in the field. His contributions extend to the development of low-power neuromorphic circuits, multifunctional sensory neurons, and metal-oxide synaptic devices with enhanced neuroplasticity, supporting innovation in human–machine integration, intelligent robotics, and next-generation computing. Furthermore, Ni’s extensive peer-review activities across more than 30 journals highlight his role in strengthening the global research ecosystem. His impact vision aims to create intelligent, adaptive, and energy-efficient neuromorphic systems that converge electronics with biological intelligence, ultimately influencing advances in healthcare technologies, autonomous robotics, environmental sensing, and future AI hardware. Through his research, Ni strives to enable transformative breakthroughs that promote societal progress, scientific discovery, and industrial applications in emerging electronic and neuromorphic technologies.

Profiles: Scopus | ORCID

Featured Publications 

1. Liu, J., Jiang, C., Yu, Q., Ni, Y., Yu, C., & Xu, W. (2025). Multidimensional free shape-morphing flexible neuromorphic devices with regulation at arbitrary points. Nature Communications,. https://doi.org/10.1038/s41467-024-55670-

2. Liu, J., Han, H., Liu, L., Li, Y., Yang, L., & Ni, Y., et al. (2023). Mammalian-brain-inspired neuromorphic motion-cognition nerve achieves cross-modal perceptual enhancement. Nature Communications, —. https://doi.org/10.1038/s41467-023-36935-w

3. Liu, L., Ni, Y., Liu, J., Wang, Y., Jiang, C., & Xu, W. (2023). An artificial autonomic nervous system that implements heart and pupil as controlled by artificial sympathetic and parasympathetic nerves. Advanced Functional Materials, —. https://doi.org/10.1002/adfm.202210119

4. Ni, Y., Yang, L., Feng, J., Liu, J., Sun, L., & Xu, W. (2023). Flexible optoelectronic neural transistors with broadband spectrum sensing and instant electrical processing for multimodal neuromorphic computing. SmartMat, —. https://doi.org/10.1002/smm2.1154

5. Xu, Z., Ni, Y., Han, H., Wei, H., Liu, L., & Zhang, S., et al. (2022). A hybrid ambipolar synaptic transistor emulating multiplexed neurotransmission for motivation control and experience-dependent learning. Chinese Chemical Letters, —. https://doi.org/10.1016/j.cclet.2022.03.015

Archana Balkrishna Yadav | Electronics | Excellence in Research

🌟Ms. Archana Balkrishna Yadav, Electronics, Excellence in Research🏆

  • Archana Balkrishna Yadav at Indvidiaul, India

Archana B. Yadav is an accomplished professional with over 15 years of experience in engineering and teaching. She holds a Master of Technology in Instrumentation and a Bachelor of Engineering in Electronic & Communication. Archana has a strong background in automation, control systems, and instrumentation. Throughout her career, she has demonstrated expertise in both academia and industry, contributing significantly to research, teaching, and project management.

Author Metrics:

Archana B. Yadav’s research contributions are notable, with several publications in international conferences and journals. Her work has been cited by peers and scholars in the field, as evidenced by her Google Scholar profile. She maintains a strong presence in the academic community, with a focus on advancing knowledge in areas such as PLCs, SCADA systems, automation, and control engineering.

Google Scholar Profile

Citations: Archana B. Yadav’s research has garnered 129 citations in total, reflecting the impact and influence of her work within the academic community.

h-index: With an h-index of 5, Archana has published at least 5 papers that have each received at least 5 citations, indicating a consistent level of scholarly output and impact.

i10-index: Archana’s i10-index is 4, indicating that she has published at least 4 papers that have received 10 or more citations each, further highlighting the significance of her research contributions.

Education:

Archana completed her Master of Technology in Instrumentation with distinction from Devi Ahilya Vishwa Vidyalaya, Indore, M.P, India, in 2005. Prior to that, she earned her Bachelor of Engineering in Electronic & Communication from Government Engineering College of Modasa, Gujarat, India, in 2003. Her academic achievements laid a solid foundation for her successful career in engineering and academia.

Research Focus:

Archana’s research interests lie in the field of automation, control systems, and instrumentation. She has a particular focus on PLCs, SCADA systems, and their applications in various industrial settings. Her work encompasses both theoretical and practical aspects, aiming to develop innovative solutions to real-world engineering challenges. Archana’s research contributes to the advancement of knowledge in her field and has practical implications for industry.

Professional Journey:

Archana’s professional journey has been marked by diverse roles in academia and industry. She has served as an Assistant Professor in the Instrumentation & Control Department at Sardar Vallabhbhai Patel Institute of Technology, Vasad (Gujarat), where she imparted knowledge and mentored students. Additionally, she has held senior engineering positions at leading companies such as Schneider Electric Pvt. Ltd. and CAD & Controls, where she worked on automation projects and software development.

Honors & Awards:

Archana B. Yadav has been recognized for her contributions to the field of engineering and academia. She received the prestigious Indian Achievers Award from Indian Achievers forums, acknowledging her outstanding achievements and leadership in her profession. This recognition reflects her dedication to excellence and her significant impact on the industry.

Publications Noted & Contributions:

Archana’s research publications have made notable contributions to the field of automation and control engineering. Her papers have been published in esteemed international conferences and journals, addressing critical issues and presenting innovative solutions. These publications have been widely cited and have garnered attention from researchers and practitioners alike, enhancing the body of knowledge in her area of expertise.

“A cellular taxonomy of the adult human spinal cord”

Cited By: 57

Year: 2023
This seminal work by Archana B. Yadav et al. presents a comprehensive cellular taxonomy of the adult human spinal cord, offering valuable insights into its complex organization and function. Published in Neuron, this research significantly advances our understanding of spinal cord physiology and has garnered substantial attention from the scientific community.

“Highly sensitive bimetallic-metal nitride SPR biosensor for urine glucose detection”

Cited By: 30

Year: 2023
In this study, Archana B. Yadav and her colleagues developed a highly sensitive biosensor for urine glucose detection using bimetallic-metal nitride SPR technology. Published in IEEE Transactions on NanoBioscience, this research introduces an innovative approach to biosensing with potential applications in healthcare diagnostics.

“Effect of 2-D nanomaterials on sensitivity of plasmonic biosensor for efficient urine glucose detection”

Cited By: 22

Year: 2023
This paper, authored by Archana B. Yadav et al., investigates the impact of 2-D nanomaterials on the sensitivity of plasmonic biosensors for urine glucose detection. Published in Frontiers in Materials, the study enhances our understanding of nanomaterial-enhanced biosensing techniques, offering insights into improved detection methods for medical diagnostics.

“PLC & SCADA based automation of filter house, a section of Water Treatment Plant”

Cited By: 13

Year: 2012
Archana B. Yadav’s contribution to the 2012 1st International Conference on Emerging Technology Trends focuses on PLC & SCADA-based automation applied to a filter house in a water treatment plant. This research demonstrates practical applications of automation technology in optimizing water treatment processes.

“Augmentation to water supply scheme using PLC & SCADA”

Cited By: 5

Year: 2011
Co-authored by AB Yadav and PS Shukla, this paper presented at the 2011 Nirma University International Conference on Engineering explores the augmentation of water supply schemes using PLC & SCADA systems. The study highlights innovative approaches to improving water management infrastructure for enhanced efficiency and reliability.

Research Timeline:

Archana’s research timeline showcases her continuous commitment to advancing knowledge and addressing contemporary challenges in automation and control engineering. From her early contributions during her academic pursuits to her impactful research projects in industry and academia, Archana’s journey reflects a dedication to excellence and a passion for pushing the boundaries of her field.

Collaborations and Projects:

Archana has been actively involved in collaborative research projects and industry engagements throughout her career. She has collaborated with researchers, engineers, and industry partners to tackle complex problems and develop innovative solutions. Her involvement in projects such as automation in drip irrigation and automation of heat exchanger systems demonstrates her ability to apply theoretical knowledge to practical applications, resulting in tangible outcomes for stakeholders.