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Dr Akshay Moudgil

vidwan id: 431209
Male

Assistant Professor, Department of Electrical Engineering
Indian Institute of Technology Jodhpur

Expertise

  • Electrical and Electronic Engineering

Publications

Total Articles 32
Books 0
Proceedings 0

Publications

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Scopus

Citations 612
h-index 14

CrossRef

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Citations 143
h-index 7
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Professional Recognition

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Community & Membership

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IEEE

2015
Member

Bio

Micro/Nano-electronics; Wearable Devices and Sensors; Hybrid (Organic/Inorganic) Transistors; Bioelectronics; Optoelectronics; Printed Electronics

Personal Details

  • Male
  • Assistant Professor , Indian Institute of Technology Jodhpur
  • N.H.- 65 Nagaur Road, Karwar
Ph.D.
Indian Institute of Technology Delhi 2020
M.E.
Other Institute 2015
B.Tech.
Other Institute 2013
Assistant Professor Aug 2023 – Present
Indian Institute of Technology Jodhpur | Department of Electrical Engineering

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Co-Authors (6)

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Prof V. Haridas

Indian Institute of Technology Delhi

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Scholarly Work

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Scholarly Publications

Roadmap on printable electronic materials for next-generation sensors

Open Access
Review
Authors: Pecunia V.;Petti L.;Andrews J.B.;Ollearo R.;Gelinck G.H.;Nasrollahi B.;Jailani J.M.;Li N.;Kim J.H.;Ng T.N.;Feng H.;Chen Z.;Guo Y.;Shen L.;Lhuillier E.;Kuo L.;Sangwan V.K.;Hersam M.C.;Fraboni B.;Basiricò L.;Ciavatti A.;Wu H.;Niu G.;Tang J.;Yang G.;Kim D.;D

Hybrid MoSe2/P3HT Transistor for Real-Time Ammonia Sensing in Biofluids

Open Access
Article
Authors: Sharma S.;Kar D.;Khanikar P.D.;Moudgil A.;Mishra P.;Das S.

Tungsten oxide thin film field-effect transistor based real-time sensing system for non-invasive oral cancer biomarker detection

Open Access
Article
Authors: Sharma S.;Kar D.;Moudgil A.;Das S.;Mishra P.

Highly Sensitive Transistor Sensor for Biochemical Sensing and Health Monitoring Applications: A Review

Open Access
Article

Highly Sensitive, Rapid, and Real-Time Detection of Hydrogen Sulfide in Human Blood Plasma Using MoSe2Field-Effect Transistor

Open Access
Article

High Performing Solid-State Organic Electrochemical Transistors Enabled by Glycolated Polythiophene and Ion-Gel Electrolyte with a Wide Operation Temperature Range from −50 to 110 °C

Open Access
Article
Authors: Wu X.;Chen S.;Moser M.;Moudgil A.;Griggs S.;Marks A.;Li T.;McCulloch I.;Leong W.L.

High Performance, Flexible, and Thermally Stable All-Solid-State Organic Electrochemical Transistor Based on Thermoplastic Polyurethane Ion Gel

Open Access
Article

Biocompatible Solid-State Ion-Sensitive Organic Electrochemical Transistor for Physiological Multi-Ions Sensing

Open Access
Article