Amit Kumar
Central University of Haryana, University of Texas at Dallas, Amity University
About
Dr. Kumar is working in the area of Organic Electronic Devices (OLEDs, OFETs, Sensors) and materials for energy storage systems. He has earned his PhD in Chemistry from National Physical Laboratory, New Delhi and MDU Rohtak and also did his postdoc from Konkuk University, Seoul, South Korea. Dr. Kumar has Six patents [3 granted (01 US and 02 Indian) and 3 published (Indian)] to his credit and more than 70 research publications in the journals of International repute. He is presently working with Central University of Haryana and visiting University of Texas Dallas, USA as visiting researcher.
Employment
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University of Texas at Dallas Visiting Researcher/ Scientist2022 - 2023
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Central University of Haryana Assistant Professor of Chemistry2020 - Present
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Amity University Assistant Professor2015 - 2020
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Konkuk University Post Doctoral Researcher2012 - 2014
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Amity University Assistant Professor2012 - 2012
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National Physical Laboratory CSIR Project Assistant2009 - 2012
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (70)
- Efficient and highly reproducible single-crystal organic field effect transistors (SC-OFETs) using N-phenacyl substituted diketopyrrolopyrrole derivatives: synthesis, crystal structure, and charge transport insights Save
- Phenyl-Flanked N-Substituted Diketopyrrolopyrrole: Synthesis, Characterization, and Application in Self-Powered Hybrid Photodetectors Save
- Zinc quinoline complexes: solvent effects on optical properties, charge transport study, and OFET applications Save
- Charge transport studies of tris[4-(diethylamino)phenyl]amine and OFET application Save
- Charge transport studies of highly stable diketopyrrolopyrrole-based molecular semiconductor Save
- Development of an ultrasensitive IR sensor using ZnO/SiNWs hybrid nanostructure Save
- Recent trends in selection of small molecules for OFET applications: A mini review Save
- Effect of shape and size of carbon materials on the thermophysical properties of magnesium nitrate hexahydrate for solar thermal energy storage applications Save
- Recent Advances on Enhanced Thermal Conduction in Phase Change Materials using Carbon Nanomaterials Save
- Highly sensitive MWCNTs/SiNWs hybrid nanostructured sensor fabricated on silicon-chip for alcohol vapors detection Save