V N Mishra
Indian Institute of Technology BHU Varanasi, Indian Institute of Technology Roorkee
About
V. N. Mishra received the Ph.D. degree in electronics engineering in 1998 from the University of Roorkee, Roorkee, India. He is presently working as Professor in the Department of Electronics Engineering, Indian Institute of Technology, Banaras Hindu University, Varanasi, India. His research interests include design and fabrication of IC compatible gas sensors, neural networks, synthesis of morphology-controlled organic conducting polymers, nanocomposites, fabrication and characterization of micro- and nano-organic electronic devices and sensors/biosensors, and PR techniques.
Employment
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Indian Institute of Technology BHU Varanasi Professor2010 - Present
Education
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Indian Institute of Technology Roorkee Ph.D.
Projects & Funding
Projects & funding information is unavailable.
Publications (73)
- A Self-Aligned, Solution-Processed Low-Voltage Operated Organic Thin-Film Transistor for Ammonia Gas Sensing at Room Temperature Save
- Air-Stable Highly Sensitive Self-Assembled P3HT/GQD Nanocomposite-Based Organic Thin-Film Transistor for Multiparametric H2S Real-Time Detection at Room Temperature Save
- Introduction of graphene oxide nanosheets in self-oriented air-stable poly(3-hexylthiophene-2,5-diyl) to enhance the ammonia gas sensing of a p-channel thin film transistor Save
- Self-Assembled Au/P3HT, High-k Bilayer Dielectric-Based Solution Processed Low Voltage OTFT for Multiparametric Ammonia Sensor at Room Temperature Save
- A Low-Voltage, Self-Oriented Organic Polymer Nanocomposite-Based Flexible TFT for Ammonia Gas Sensing at Room Temperature Save
- Fabrication and Characterization of P3HT/MoS Thin-Film Based Ammonia Sensor Operated at Room Temperature Save
- Polymer/Graphene oxide nanocomposite thin film for NO2 sensor: An in situ investigation of electronic, morphological, structural, and spectroscopic properties Save
- Design and Analysis of Low Leakage SRAM cell at 45nm Technology Save
- Fast Development of Self-Assembled, Highly Oriented Polymer Thin Film and Observation of Dual Sensing Behavior of Thin Film Transistor for Ammonia Vapor Save
- Design of DRAM sense amplifier using 45nm technology Save