Jay Singh
Also known as: Jay Singh
Banaras Hindu University Faculty of Science, Banaras Hindu University
About
Dr. Jay Singh is an accomplished scientist and educator currently serving as an Assistant Professor at the Department of Chemistry, Institute of Sciences, Banaras Hindu University in Varanasi, Uttar Pradesh, India, since 2017. He obtained his Ph.D. degree in Polymer Science from Motilal Nehru National Institute of Technology in 2010, following which he completed his MSc and BSc degrees at Allahabad University, Uttar Pradesh. Throughout his career, Dr. Jay has gained extensive research experience through prestigious postdoctoral fellowships at institutions including the National Physical Laboratory in New Delhi, Chonbuk National University in South Korea, and Delhi Technological University in Delhi. His exceptional research capabilities have been recognized through notable fellowships such as the CSIR (RA), DST-Young Scientist Fellowship, and DST-INSPIRE Faculty Award. Dr. Jay's research primarily focuses on the development of nanomaterials synthesized chemically and biologically, as well as their nanobiocomposites, conducting polymers, and self-assembled monolayers. He has dedicated his efforts to the creation of clinically significant biosensors and sensors for the detection and estimation of various bioanalytes, including enzymes, antibodies, DNA, toxic chemicals, and gases. With over 100 research papers published in esteemed international journals and a remarkable citation count exceeding 4000, Dr. Jay's contributions have been widely recognized. He possesses an impressive h-index of 36, which indicates the impact and influence of his research. He has successfully undertaken numerous research projects funded by different agencies, further showcasing his ability to secure research grants. In addition to his research accomplishments, Dr. Jay has authored and edited more than 15 books and contributed over 40 book chapters for internationally renowned publishers such as Elsevier, Springer Nature, IOP, Wiley, and CRC. He has also taken on the responsibility of handling special issues for esteemed journals including Elsevier, Wiley, Springer, MDPI, and Frontiers. Currently, Dr. Jay's active research revolves around the fabrication of sustainable metal oxide-based biosensors for applications in clinical diagnosis, food packaging, drug delivery, and tissue engineering. His work has significantly contributed to the understanding of interfacial charge transfer processes and the sensing capabilities of metal nanoparticles. Dr. Jay Singh's extensive research contributions, publication record, and academic pursuits have established him as a highly respected scientist in the field of chemistry and nanomaterials. His dedication to advancing the field and his commitment to creating innovative biosensors and sensors for various applications continue to make a significant impact on the scientific community and society.
Employment
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Banaras Hindu University Faculty of Science Assistant Prof2017 - Present
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Banaras Hindu University Assistant Prof2017 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (221)
- Tailoring ZnO nanoparticles via chemical and Mangifera indica-mediated routes for high-performance electrochemical sensing of 4-nitrophenol Save
- Super Capacitors: Future Trends and Innovations, Advances in Waste Conversion Technologies, Novel Materials and Manufacturing Techniques Save
- Synthesis, crystal structure elucidation, and molecular interaction studies of a guanidinium naphthoate adduct via Hirshfeld and docking analyses Save
- Exploring the Potential of 2D TMD‐Based Optical Biosensors: Bridging Nanotechnology and Smart Diagnostics Save
- A sustainable anti-corrosive coating of epoxy resin-based Ce–Mn oxide nanocomposite in salt-spray and marine environments Save
- Development of an Advanced CuO@Chitosan Nanocomposite Sensor on Screen-Printed Carbon Electrodes for Food Safety: Application to Histamine Detection Save
- Impedimetric sensing of C-reactive protein using a novel molecularly imprinted polymer coupled with bismuth-enhanced cobalt ferrite nanocomposites for cardiovascular risk assessment Save
- Self-propelled MOF micromotors: a smart solution for antibiotic pollution and resistance control Save
- Nanoengineered Fabrication of Molecularly Imprinted Polymer Coupled Ni(0.10)CuFe2O4 Nanocomposites for Impedimetric Detection of C-Reactive Protein in Cardiovascular Diagnostics Save
- Breaking the Gadolinium Mold: A Metal–Organic Framework Contrast Agent for Magnetic Resonance Imaging Save