Area of research
Catalysis · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Electrocatalyst and Catalysis, with related work in Nitrate, Oxygen evolution, Overpotential. Notable publications include 'Identifying the Origin of Ti 3+ Activity toward Enhanced Electrocatalytic N 2 Reduction over TiO 2 Nanoparticles Modulated by Mixed‐Valent Copper', 'Screening of Intermetallic Compounds Based on Intermediate Adsorption Equilibrium for Electrocatalytic Nitrate Reduction to Ammonia', and 'Rational catalyst design for oxygen evolution under acidic conditions: strategies toward enhanced electrocatalytic performance'.
Screening of Intermetallic Compounds Based on Intermediate Adsorption Equilibrium for Electrocatalytic Nitrate Reduction to Ammonia
Hetero‐Interface Manipulation in MoO<i><sub>x</sub></i>@Ru to Evoke Industrial Hydrogen Production Performance with Current Density of 4000 mA cm<sup>−2</sup>
Breaking scaling relationships in alkynol semi-hydrogenation by manipulating interstitial atoms in Pd with d-electron gain
Filling Mesopores of Conductive Metal–Organic Frameworks with Cu Clusters for Selective Nitrate Reduction to Ammonia
Rational catalyst design for oxygen evolution under acidic conditions: strategies toward enhanced electrocatalytic performance
Identifying the Origin of Ti<sup>3+</sup> Activity toward Enhanced Electrocatalytic N<sub>2</sub> Reduction over TiO<sub>2</sub> Nanoparticles Modulated by Mixed‐Valent Copper
Ambient electrohydrogenation of N<sub>2</sub> for NH<sub>3</sub> synthesis on non-metal boron phosphide nanoparticles: the critical role of P in boosting the catalytic activity
Critical light-related gene expression varies in two different strains of the dinoflagellate Karlodinium veneficum in response to the light spectrum and light intensity
Gene Transcriptional and Metabolic Profile Changes in Mimetic Aging Mice Induced by D-Galactose