Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Redox and Aqueous solution, with related work in Catalysis, Electrolyte, Perovskite (structure). Notable publications include 'Protocol in Evaluating Capacity of Zn–Mn Aqueous Batteries: A Clue of pH', 'Reunderstanding aqueous Zn electrochemistry from interfacial specific adsorption of solvation structures', and 'Remarkable Improvement in Photocatalytic Performance for Tannery Wastewater Processing via SnS 2 Modified with N‐Doped Carbon Quantum Dots: Synthesis, Characterization, and...'.
Hole‐Mediated Lattice Oxygen Redox Design for Perovskite Oxide Catalysts
Hole‐Mediated Lattice Oxygen Redox Design for Perovskite Oxide Catalysts
Embedding Reverse Electron Transfer Between Stably Bare Cu Nanoparticles and Cation‐Vacancy CuWO <sub>4</sub>
Protocol in Evaluating Capacity of Zn–Mn Aqueous Batteries: A Clue of pH
Reunderstanding aqueous Zn electrochemistry from interfacial specific adsorption of solvation structures
Protocol in Evaluating Capacity of Zn-Mn Aqueous Batteries: A Clue of pH
Remarkable Improvement in Photocatalytic Performance for Tannery Wastewater Processing via SnS<sub>2</sub> Modified with N‐Doped Carbon Quantum Dots: Synthesis, Characterization, and 4‐Nitrophenol‐Aided Cr(VI) Photoreduction