Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Catalysis, Materials science, Chemistry, Density functional theory, Transition metal, and Nanotechnology.
Machine learning-guided high-throughput screening of dual-atom catalysts for electrochemical C-C coupling
Ferromagnetic Ordering Outperforms Coordination Effects in Governing Oxygen Reduction Catalysis on High‐Index Nickel Single Crystals
Electrocatalytic C─S Cross‐Coupling via Engineered Frustrated Lewis Acid‐Base Pairs for High‐Efficiency Methanesulfonate Synthesis
Tandem Catalysts Enabling Efficient C−N Coupling toward the Electrosynthesis of Urea
Advances in morphology-controlled alumina and its supported Pd catalysts: synthesis and applications
Tandem Catalysts Enabling Efficient C−N Coupling toward the Electrosynthesis of Urea
Dual‐Stimuli‐Responsive Modulation Organic Afterglow Based on N─H Proton Migration Mechanism
Surface Passivation with Diaminopropane Dihydroiodide for p‐i‐n Perovskite Solar Cells with Over 25% Efficiency
Engineering Spin States of Isolated Copper Species in a Metal–Organic Framework Improves Urea Electrosynthesis
Circularly polarized electroluminescence from a single-crystal organic microcavity light-emitting diode based on photonic spin-orbit interactions
Room-Temperature Electrical Field-Enhanced Ultrafast Switch in Organic Microcavity Polariton Condensates
Lanthanide Contraction Builds Better High‐Voltage LiCoO<sub>2</sub> Batteries
Understanding and Modifying the Scaling Relations for Ammonia Synthesis on Dilute Metal Alloys: From Single-Atom Alloys to Dimer Alloys
Defective g-C3N4 supported Ru3 single-cluster catalyst for ammonia synthesis through parallel reaction pathways
Riemannian Surface on Carbon Anodes Enables Li-Ion Storage at −35 °C
Breaking the Stable Triangle of Carbonate via W–O Bonds for Li-CO<sub>2</sub> Batteries with Low Polarization
Molecular Design Strategy for Practical Singlet Fission Materials: The Charm of Donor/Acceptor Decorated Quinoidal Structure
Revealing the key role of bonding states in surface chemisorption
Engineering Platinum–Oxygen Dual Catalytic Sites via Charge Transfer towards Highly Efficient Hydrogen Evolution
Regulating Charge Transfer of Lattice Oxygen in Single‐Atom‐Doped Titania for Hydrogen Evolution
Electrospinning fabrication of flexible, foldable, and twistable Sb2S3/TiO2/C nanofiber anode for lithium ion batteries
Monolayered Ru1/TiO2 nanosheet enables efficient visible-light-driven hydrogen evolution
Regulation of oxygen reduction reaction by the magnetic effect of L10-PtFe alloy
Efficient Bosonic Condensation of Exciton Polaritons in an H-Aggregate Organic Single-Crystal Microcavity
Singlet Fission in a <i>para</i>-Azaquinodimethane-Based Quinoidal Conjugated Polymer
sp<sup>2</sup>/sp<sup>3</sup> Hybridized Carbon as an Anode with Extra Li-Ion Storage Capacity: Construction and Origin
Co13O8—metalloxocubes: a new class of perovskite-like neutral clusters with cubic aromaticity
Manganese Doping in Cobalt Oxide Nanorods Promotes Catalytic Dehydrogenation
Engineering Platinum–Oxygen Dual Catalytic Sites via Charge Transfer towards Highly Efficient Hydrogen Evolution
Revealing the Role of d Orbitals of Transition-Metal-Doped Titanium Oxide on High-Efficient Oxygen Reduction