KM
Dr Kotesh Kumar Mandari
Yeungnam University, Indian Institute of Chemical Technology
About
• International Research Professor, Yeungnam University, South Korea. (1st September 2019 – present
• International Research Professor, Yeungnam University, South Korea. (1st March 2017 – 31st August 2018)
• Ph.D. CSIR-Indian Institute of Chemical Technology, India. (2011 – 2016)
* M Sc Osmania University, Telangana, India. Chemistry (2007-2009)
* B Sc Osmania University, Telangana, India. Chemistry, Physics, and Mathematics (2003-2006)
Employment
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Yeungnam University Assistant professor2017 - Present
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Indian Institute of Chemical Technology2011 - 2016
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (37)
- Promotional effect of rare earth (Er, Pr, Nd, Gd and Sm) metals on the photocatalytic H2O splitting activity of Ni–Al doped TiO2 catalysts for H2 production Save
- Transforming solar energy to Fuel: Innovative Ru@CuInS2/g-C3N4 nanocomposites for green hydrogen production Save
- Ag/AgVO3/g-C3N4 Ternary Nanocomposites for Enhanced Photo- and Electrocatalytic Hydrogen Evolution: Synergistic Charge Separation and Interfacial Engineering Save
- Efficient Gd-modified NiSiO2 catalysts for selective hydrogenation of furfural to tetrahydrofurfuryl alcohol in aqueous media Save
- Enhanced electrocatalytic oxygen evolution by silver–nickel–copper alloy nanoparticles supported on g-C3N4: A synergistic approach for improved catalytic performance Save
- Development of Potential Electrocatalyst: Highly Multiporous WO3–rGO Nanocomposites for Enhancing Electrocatalytic Oxygen Evolution Reactions Save
- Highly efficient ternary NiO/MoS2/BiVO4 heterostructure for electrocatalytic HER/OER applications Save
- Ni2P/Co2P as a highly efficient catalyst for enhancing the electrochemical performance of P-NiMoO4 for oxygen evolution reaction Save
- Highly efficient ternary CuP2/Ni1−xCux‒P@g-C3N4 nanostructure for improved hydrogen and oxygen evolution reactions Save
- Synthesis of 2-Methylpyrazine Using Crude Glycerol over Zn-Cr-O Catalyst: A Value Addition Process for the Utilization of Biodiesel By-Product Save