MK
Mani Karthik
International Advanced Research Centre for Powder Metallurgy and New Materials, CIC energigune, Anna University, University of Turin
Employment
-
International Advanced Research Centre for Powder Metallurgy and New Materials Senior Scientsit2016 - Present
-
CIC energigune Associate Researcher2014 - 2016
-
CIC energigune Post Doctoral Researcher2012 - 2014
-
University of Turin Research Scientist2010 - 2011
-
National Chiao Tung University Adjunct Assistant Professor and Postdoctoral Research Fellow2006 - 2009
-
Korea Advanced Institute of Science and Technology Research Scientist2005 - 2006
Education
-
Anna University Ph.D.2001 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (53)
- Phosphorus-decorated carbon fiber textiles as flexible, free standing and binder free electrodes for high performance sustainable supercapacitor Save
- 3D-printed capacitive deionization cells utilizing Neltuma juliflora-derived activated carbon for enhanced capacitive deionization and supercapacitor performance Save
- Biowaste‐Derived Porous Carbon from Lagenaria siceraria for High‐Performance Supercapacitor Electrodes Save
- Synergetic effect of spinel oxide nanoparticles on unprecedented enhancement of specific heat capacity of molten salt based phase change material for thermal energy storage applications Save
- Accelerated discovery of stable spinels for energy applications using dense neural network approach Save
- Hybrid ML model of quantum-embedded Bi-LSTM classifier for the prediction of stable spinel oxides Save
- Dual functional superhydrophobic and superorganophilic porous graphene carbon nanocomposite electrodes for Unprecedented High-Voltage supercapacitor with superior rate capability Save
- Hierarchical porous carbon derived from Strychnos Potatorum Seeds as biowaste for high-performance supercapacitor electrodes with enhanced voltage and energy density with commercial mass loading Save
- A critical review on core/shell-based nanostructured photocatalysts for improved hydrogen generation Save
- Novel Insight into the Concept of Favorable Combination of Electrodes in High Voltage Supercapacitors: Toward Ultrahigh Volumetric Energy Density and Outstanding Rate Capability Save