About
Mohammad Qureshi, finished his PhD in 2005 from Indian Institute of Technology Kanpur on the topic related to organic light emitting diodes. After a short stint at NTU, Taiwan, he moved to Forshungzentrum, Juelich for his postdoctoral work. In 2008, he joined Indian Institute of Technology Guwahati and is currently working as a Professor there. His work is mainly focus on photoelectrochemical and electrochemical systems. He has published multiple papers in high impact journals such as J. Mater. Chem A etc. He has received several awards and fellowships, namely, Fulbright - Nehru Academic Excellence by USIEF, Sakura Science Award by Japanese Science foundation to name few. More information can be found at www.iitg.ac.in/mq
Employment
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Indian Institute of Technology Guwahati Professor
Education
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Indian Institute of Technology Guwahati Ph.D.2008 - Present
Projects & Funding
Projects & funding information is unavailable.
Publications (68)
- Regulating Zn2+ Diffusion Dynamics in Aqueous Zn‐Ion Batteries by Tweaking Coordination Sites in Organic–Inorganic Hybrid Cathode Save
- Push‐Pull Interplay of Soft/Hard Magnetic Spin Junctions for High Performance Ammonium Ion Pseudo‐Capacitors Save
- Intrinsic Electric Field-Driven Charge Polarization Strategy in Homojunction Analogues of Graphitic Carbon Nitride for High-Performance Pseudocapacitor Save
- Controlling Diffusion Dynamics Through Additive Electrolyte Chemistry in Flexible Free‐Standing Electrode With Unified 1D‐2D Morphologies Save
- Geometry-engineered copper redox interfaces drive highly selective CO2 reduction to C2 products Save
- Push–pull electronic effects of a three-component two-heterojunction electrocatalyst for directional carrier transport in bifunctional water electrolysis Save
- Harnessing Active Protons through Parasitic Oxygen Evolution Reaction for Selective Electrochemical CO2 Reduction in Aprotic Media Save
- Designing Donor–Acceptor Interfaces with Built-In Electric Potential Using Hierarchically Grown NiTe–CeO2 Heterostructure for Efficient Water Oxidation Save
- Electronic structure tuning to facilitate charge transfer in Z-scheme mediated CuO/Se@WO3 aided by synchronized Cu(OH)2 for efficient overall water splitting Save
- Integrating Homogeneous and Heterogeneous Catalytic Systems for Synergistic Water Oxidation: Role of Geometrically Distinct Bispidine Metal Complexes Save