Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Advanced battery technologies research, Electrocatalysts for Energy Conversion, Ferroelectric and Piezoelectric Materials, and Supercapacitor Materials and Fabrication.
Lithium‐mediated Reconfiguration Activates Oxygen Radical Coupling in Iridium Oxide for Efficient Acidic Water Oxidation
Exploring Ni-based alkaline OER catalysts: A comprehensive review of structures, performance, and in situ characterization methods
Modulation of Electrochemical Reactions through External Stimuli: Applications in Oxygen Evolution Reaction and Beyond
Irreversible Oxygen Redox Enables Lithium Extraction from Ternary Lithium-Ion Battery Cathodes in Water
Modulation of Electrochemical Reactions through External Stimuli: Applications in Oxygen Evolution Reaction and Beyond.
Materials Innovation at the National University of Singapore: A Special Issue Dedicated to the 120th Anniversary.
Pivotal Role of A-Site Cation Intercalation in Reconstructed Perovskites for Enhanced Water Splitting.
Irreversible Oxygen Redox Enables Lithium Extraction from Ternary Lithium-Ion Battery Cathodes in Water.
High-spin Co3+ in cobalt oxyhydroxide for efficient water oxidation
High-spin Co<sup>3+</sup> in cobalt oxyhydroxide for efficient water oxidation.
Facilitating Formate Selectivity via Optimizing <i>e</i><sub>g</sub>* Band Broadening in NiMn Hydroxides for Ethylene Glycol Electro‐Oxidation
Unveiling the Pivotal Role of <i>d</i><sub><i>x</i>2−<i>y</i>2</sub> Electronic States in Nickel‐Based Hydroxide Electrocatalysts for Methanol Oxidation
Promoting Surface Reconstruction in Spinel Oxides via Tetrahedral‐Octahedral Phase Boundary Construction for Efficient Oxygen Evolution
Promoting Surface Reconstruction in Spinel Oxides via Tetrahedral‐Octahedral Phase Boundary Construction for Efficient Oxygen Evolution
Facilitating Formate Selectivity via Optimizing <i>e</i><sub>g</sub>* Band Broadening in NiMn Hydroxides for Ethylene Glycol Electro‐Oxidation
Hydrothermal-Induced Cationic Vacancies in NiAl Hydroxide for Enhanced Oxygen Evolution Activities through Optimization of e<sub>g</sub>* Band Broadening.
Fundamental Understanding of Structural Reconstruction Behaviors in Oxygen Evolution Reaction Electrocatalysts
Fundamental Understanding of Structural Reconstruction Behaviors in Oxygen Evolution Reaction Electrocatalysts
Optimization of oxygen evolution activity by tuning e*g band broadening in nickel oxyhydroxide
Optimization of oxygen evolution activity by tuning e*g band broadening in nickel oxyhydroxide
Unveiling The Mechanism of The Dendrite Nucleation and Growth in Aqueous Zinc Ion Batteries
Unveiling The Mechanism of The Dendrite Nucleation and Growth in Aqueous Zinc Ion Batteries
Methods for Characterizing Intercalation in Aqueous Zinc Ion Battery Cathodes: A Review
Origin of Surface Reconstruction in Lattice Oxygen Oxidation Mechanism Based‐Transition Metal Oxides: A Spontaneous Chemical Process
Key role of eg* band broadening in nickel-based oxyhydroxides on coupled oxygen evolution mechanism
Challenges and Strategies in the Development of Zinc‐Ion Batteries
Facet Engineering and Pore Design Boost Dynamic Fe Exchange in Oxygen Evolution Catalysis to Break the Activity–Stability Trade-Off
Accelerated Surface Reconstruction through Regulating the Solid‐Liquid Interface by Oxyanions in Perovskite Electrocatalysts for Enhanced Oxygen Evolution
Suppressing zinc dendrite growth in aqueous battery via Zn–Al alloying with spatially confined zinc reservoirs
Understanding the Origin of Reconstruction in Transition Metal Oxide Oxygen Evolution Reaction Electrocatalysts