CR
C. Justin Raj
VIT University - Chennai Campus, Dongguk University, University of Madras, Loyola College, Pusan National University, Scott Christian College
Employment
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VIT University - Chennai Campus Associate Professor2022 - Present
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Dongguk University Associate Professor2020 - 2022
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Dongguk University Assistant Professor2013 - 2020
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Pusan National University Post Doctoral Fellow2011 - 2014
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Indian Institute of Science Centenary Post Doctoral Research Associate2009 - 2011
Education
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University of Madras PhD2005 - 2008
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Loyola College MPhil2004 - 2005
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Scott Christian College MSc2001 - 2003
Projects & Funding
Projects & funding information is unavailable.
Publications (116)
- Road Map for In Situ Grown Binder‐Free MOFs and Their Derivatives as Freestanding Electrodes for Supercapacitors Save
- Engineering redox active sites enriched 3D-on-2D bimetallic double layered hydroxide electrode for supercapatteries Save
- Impact of oxygen‐defects induced electrochemical properties of three‐dimensional flower‐like CoMoO4 nanoarchitecture for supercapacitor applications Save
- Calcium copper titanate a perovskite oxide structure: effect of fabrication techniques and doping on electrical properties—a review Save
- Facile fabrication of flower-like binary metal oxide as a potential electrode material for high-performance hybrid supercapacitors Save
- Epitaxial Engineering Strategy to Amplify Localized Surface Plasmon Resonance and Electrocatalytic Activity Enhancement in Layered Bismuth Selenide by Phosphorus Functionalization Save
- Synergistic effects of nanoarchitecture and oxygen vacancy in nickel molybdate hollow sphere towards a high‐performance hybrid supercapacitor Save
- Synergistic integration of three‐dimensional architecture composed of two‐dimensional nanostructure ternary metal oxide for high‐performance hybrid supercapacitors Save
- Hierarchical NiCo / NiO / NiCo 2 O 4 composite formation by solvothermal reaction as a potential electrode material for hydrogen evolutions and asymmetric supercapacitors Save
- Sonoelectrochemical exfoliation of graphene in various electrolytic environments and their structural and electrochemical properties Save