Area of research
Inorganic Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Metal-Organic Frameworks: Synthesis and Applications, Electrocatalysts for Energy Conversion, ZnO doping and properties, and Advanced battery technologies research.
Transformation of metal-organic frameworks (MOFs) under different factors
Metal–Organic Framework Supported Low‐Nuclearity Cluster Catalysts for Highly Selective Carbon Dioxide Electroreduction to Ethanol
Coral-like AgNPs hybrided MOFs modulated with biopolymer polydopamine for synergistic antibacterial and biofilm eradication
Oriented Exfoliating 3D Metal–Organic Frameworks into Ultrathin Metal–Organic Nanosheets with Different Crystal Faces
Metal–Organic Framework Supported Low‐Nuclearity Cluster Catalysts for Highly Selective Carbon Dioxide Electroreduction to Ethanol
Precisely Controllable Artificial Muscle with Continuous Morphing based on “Breathing” of Supramolecular Columns
Precise Anchoring of Fe Sites by Regulating Crystallinity of Novel Binuclear Ni‐MOF for Revealing Mechanism of Electrocatalytic Oxygen Evolution
A Mixed Protonic–Electronic Conductor Base on the Host–Guest Architecture of 2D Metal–Organic Layers and Inorganic Layers
An environmentally friendly and highly transparent ZnO/cellulose nanocomposite membrane for UV sensing and shielding
Metal‐Organic Frameworks‐Derived Nickel–Iron Oxyhydroxide with Highly Active Edge Sites for Electrochemical Oxygen Evolution
High Performance UV-B Photodetector Based on Highly (200)-Oriented SnO₂ Film With a Hydrophobic PTFE Passivation Layer
Electrochemical Exfoliation of Pillared‐Layer Metal–Organic Framework to Boost the Oxygen Evolution Reaction
Electrochemical Exfoliation of Pillared‐Layer Metal–Organic Framework to Boost the Oxygen Evolution Reaction