Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research focused on Prussian blue and Electrocatalyst, with related work in Overpotential, Water splitting, Oxygen evolution. Notable publications include 'Vanadium-Based Trimetallic Metal-Organic-Framework Family as Extremely High-Performing and Ultrastable Electrocatalysts for Water Splitting', 'Synthesis and Applications of Prussian Blue and Its Analogues as Electrochemical Sensors', and 'Indium-Based Metal–Organic Framework for Efficient Photocatalytic Hydrogen Evolution'.
Exploring P-(Fe,V)-Codoped Metastable-Phase β-NiMoO<sub>4</sub> for Improving the Performance of Overall Water Splitting
Vanadium<i>-</i>Doped Bimetallic Nanoporous Metal–Organic Frameworks as Bifunctional Electrocatalysts for Urea-Assisted Hydrogen Production
Bimetal-regulated indium-based metal-organic framework family realizing highly efficient photo/electrocatalytic hydrogen evolution reaction
Investigating and improving the water stability of ZIF-L-Co for electrochemical glucose sensors
UiO-66-Derived PBA Composite as Multifunctional Electrochemical Non-Enzymatic Sensor Realizing High-Performance Detection of Hydrogen Peroxide and Glucose
(FeMnCe)-co-doped MOF-74 with significantly improved performance for overall water splitting
Iron‐Cobalt‐Cerium Multimetallic Oxides Derived from Prussian Blue Precursors: Enhanced Oxygen Evolution Electrocatalysis
Controllable design of a macroporous PBA as an efficient non-enzymatic electrochemical sensor for glucose detection
One-step synthesis of 2D@3D hollow Prussian blue analogue as a high-performance bifunctional electrochemical sensor
Vanadium-Based Trimetallic Metal-Organic-Framework Family as Extremely High-Performing and Ultrastable Electrocatalysts for Water Splitting
Indium-Based Metal–Organic Framework for Efficient Photocatalytic Hydrogen Evolution
Molecular Regulation Based on Functional Trimetallic Metal–Organic Frameworks for Efficient Oxygen Evolution Reaction
Synthesis and Applications of Prussian Blue and Its Analogues as Electrochemical Sensors
CoFeP nanocube-arrays based on Prussian blue analogues for accelerated oxygen evolution electrocatalysis