VJ
Vijaykumar V. Jadhav
Guangdong Technion – Israel Institute of Technology (GTIIT), University College Cork Faculty of Science, S.R.T. M. University, Council of Scientific and Industrial Research
About
Researcher
Employment
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Guangdong Technion – Israel Institute of Technology (GTIIT) Research Scientist2019 - Present
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University College Cork Faculty of Science Postdoctoral Researcher2018 - 2019
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R&D Center for Hybrid Interface Materials, Pusan National University Postdoc2016 - 2016
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Pusan National University College of Engineering Full time researcher2015 - 2015
Education
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S.R.T. M. University PhD2011 - 2015
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Council of Scientific and Industrial Research NET2010 - Present
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School of Physical Sciences, S. R. T. M. University Nanded Maharashtra India M.Sc.2007 - 2009
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S. R.T. M. University B.Sc.2004 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (39)
- Exploring Ni(OH)2@Bi2O3 p-p Hetero-junction electrode for enhanced energy storage performance Save
- Chemical synthesis of Bi2O3 and its ionic conversion to Bi2S3, Bi2Se3, and Bi2S3xSe3(x-1) nanostructures as high-performance electrochemical supercapacitors Save
- Bi-functional electrochemical water splitting performance of the BiOCl electrocatalysts Save
- Ameliorated energy storage and oxygen evolution catalysis activities of in-situ grown Mn-doped NiMoO4⋅xH2O micro-rods Save
- Enhanced Charge Storage Performance and Electrocatalytic Oxygen Evolution Reaction Activity of Self-Grown Iron–Cobalt-Doped Nickel Oxide Nanoplates: An Example of the Synergistic Effect Save
- Spin-flop process identified in heteroepitaxial rare-earth films of Er and Ho Save
- Plasma-activated tight and uniform grown of metal-organic frame-work on carbon cloth for stable Li metal anode Save
- A simple but efficient Li-doping approach for enhancing supercapacitor performance of the BiFeO3 perovskite nanostructures Save
- Sulfur ion-exchange strategy to obtain Bi2S3 nanostructures from Bi2O3 for better water splitting performance Save
- Metal–Organic Framework-Derived ZnO, N Dually Doped Nanocages as an Efficient Host for Stable Li Metal Anodes Save