About
Prof. Ashwani Kumar is currently an Assistant Professor Grade-I in the Centre for Nanotechnology, Indian Institute of Technology Roorkee (IIT-R). He worked as a postdoctoral research fellow (2022-2023) and later as an Alexander von Humboldt Postdoctoral Research Fellow (2024-2025) at the Department of Heterogeneous Catalysis, Max-Planck-Institut für Kohlenforschung (MPI-KOFO), Germany. He received his Ph.D. in chemistry (Inorganic Materials Chemistry) from the Department of Chemistry (Institute for Basic Science: IBS), Sungkyunkwan University Natural Sciences Campus, Republic of Korea (Sep. 2018-Feb. 2022). Before moving to S. Korea, he completed his integrated BS-MS in chemical sciences from Indian Institute of Science Education and Research Kolkata, India (IISER-K).
Employment
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Indian Institute of Technology Roorkee Assistant Professor Grade-I2026 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (44)
- Modulating Local Coordination in Single‐Atom Catalysts: From Fundamental Concepts to Emerging Breakthroughs in Electrocatalysis Save
- Modulating Local Coordination in Single‐Atom Catalysts: From Fundamental Concepts to Emerging Breakthroughs in Electrocatalysis Save
- Solar-Light-Driven Photocatalytic Oxidative Coupling of Phenol Derivatives over Bismuth-Based Porous Metal Halide Perovskites Save
- Regulating Local Coordination Sphere of Ir Single Atoms at the Atomic Interface for Efficient Oxygen Evolution Reaction Save
- Orbital-engineered anomalous Hall conductivity in stable full Heusler compounds: a pathway to optimized spintronics Save
- Iridium Single-Atom-Ensembles Stabilized on Mn-Substituted Spinel Oxide for Durable Acidic Water Electrolysis Save
- Graphene and its hybrid nanocomposite: A Metamorphoses elevation in the field of tissue engineering Save
- Graphene and its Hybrid Nanocomposite: A Metamorphoses Elevation in the Field of Neural Tissue Engineering Save
- Boron-Incorporated Cobalt-Nickel Oxide Nanosheets for Electrochemical Oxygen Evolution Reaction Save
- Advanced dual-atom catalysts on graphitic carbon nitride for enhanced hydrogen evolution via water splitting Save