Area of research
Materials Chemistry · Mechanical Engineering
Research interest
Research interests include Intermetallics and Advanced Alloy Properties, Titanium Alloys Microstructure and Properties, MXene and MAX Phase Materials, and Ferroelectric and Piezoelectric Materials.
Modulation of Ni 3d-band electronic states via Pt–O–Ni bridging toward efficient methanol electrooxidation over atomic Pt-dispersed NiFe LDH
Unveiling the Mechanism of Cr-Enhanced Oxygen Evolution Activities in Nickel Hydroxide.
Interfacial Dual-Electric-Field-Mediated SnO<sub>2</sub>-Pt Hollow Nanotubes Enhance Hydrogen Oxidation Activity and Phosphoric Acid Tolerance.
Exploring Ni-based alkaline OER catalysts: A comprehensive review of structures, performance, and in situ characterization methods
A two-stage dynamic planning for rural hybrid renewable energy systems under coupled carbon-green certificate trading
Advances and Enhancement Strategies in Nickel-Based Electrocatalysts for Oxygen Evolution Reaction
Scheduling of integrated energy system considering the combined operation of SOFC and dynamic hydrogen-blended gas turbine
Pivotal Role of A-Site Cation Intercalation in Reconstructed Perovskites for Enhanced Water Splitting.
High-spin Co3+ in cobalt oxyhydroxide for efficient water oxidation
High-spin Co<sup>3+</sup> in cobalt oxyhydroxide for efficient water 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
Excellent and CO2-resistant permeability of Ce0.85Nd0.1Cu0.05O2-δ-Nd Sr1-Fe1-Cu O3-δ dual-phase oxygen transport membranes
Near-infrared light stimulation regulates neural oscillation and memory behavior of mice with Alzheimer’s disease
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
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
Accelerated Surface Reconstruction through Regulating the Solid‐Liquid Interface by Oxyanions in Perovskite Electrocatalysts for Enhanced Oxygen Evolution
Understanding the Origin of Reconstruction in Transition Metal Oxide Oxygen Evolution Reaction Electrocatalysts
Key role of e<sub>g</sub><sup>*</sup> band broadening in nickel-based oxyhydroxides on coupled oxygen evolution mechanism.
Unraveling the effect of local dopant environment on NiO6 octahedron perturbation for enhanced oxygen evolution activity
Thermostable 1T‐MoS<sub>2</sub> Nanosheets Achieved by Spontaneous Intercalation of Cu Single Atoms at Room Temperature and Their Enhanced HER Performance
Understanding of Oxygen Redox in the Oxygen Evolution Reaction
Pivotal role of reversible NiO6 geometric conversion in oxygen evolution
Understanding of Oxygen Redox in the Oxygen Evolution Reaction.
Pivotal role of reversible NiO<sub>6</sub> geometric conversion in oxygen evolution.
Influence of scanning strategy and building direction on microstructure and corrosion behaviour of selective laser melted 316L stainless steel
Discovery and Facile Synthesis of a New Silicon Based Family as Efficient Hydrogen Evolution Reaction Catalysts: A Computational and Experimental Investigation of Metal Monosilicides
Low-temperature superplasticity of β-stabilized Ti-43Al-9V-Y alloy sheet with bimodal γ-grain-size distribution
Low-temperature superplasticity of β-stabilized Ti-43Al-9V-Y alloy sheet with bimodal γ-grain-size distribution