Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Electrochemistry and Boron nitride, with related work in Photocatalysis, Catalysis, Hexagonal boron nitride. Notable publications include 'Functionalized hexagonal boron nitride nanomaterials: emerging properties and applications', 'Covalent Triazine Frameworks via a Low‐Temperature Polycondensation Approach', and 'Highly Water-Soluble, Porous, and Biocompatible Boron Nitrides for Anticancer Drug Delivery'.
Ferromagnetic Fe-TiO2 spin catalysts for enhanced ammonia electrosynthesis
Electroreduction of nitrate into ammonia on Co3O4: Mechanistic insights into Co2+-promoted NO3RR performance
High‐Performance Sky‐Blue Perovskite Spin‐Light Emitting Diodes Due to Chiral Ionic Liquid Implantation and Passivation
Stable Cobalt–Zeolite Propane‐Dehydrogenation Catalysts Enabled by Reaction‐Driven Reconstruction
Suppressing COx in oxidative dehydrogenation of propane with dual-atom catalysts
Interpretable machine learning‐assisted high‐throughput screening of highly active nitrogen fixation dual‐atom catalysts
Machine learning-guided high-throughput screening of dual-atom catalysts for electrochemical C-C coupling
Synergistic Passivation via Amino Acid Derivative for Highly Efficient Quasi-2D Perovskite Green Light-Emitting Diode
Electrocatalytic C─S Cross‐Coupling via Engineered Frustrated Lewis Acid‐Base Pairs for High‐Efficiency Methanesulfonate Synthesis
Lactylation-regulated biomolecular condensates: metabolic control of phase separation in physiology and disease
Targeting to Intensify <scp>M2</scp> Macrophage Polarization Ameliorate Podocyte Lipid Accumulation and Damage by Tea Polyphenols via Activating <scp>SIRT1</scp> in the Aged Model Rats With <scp>DKD</scp>
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
Enhancing d-p orbital coupling by Hf doping to construct a stable LiMn2O4 cathode for lithium-ion batteries
“Bowling Collision Effect” of CoMo<sub>6</sub> Polyoxometalate Units Enables Wide Temperature Range from −20 to 60 °C and Dendrite Mitigation Li‐S Batteries
Phase separation-mediated biomolecular condensates and their relationship to tumor
Tandem Catalysts Enabling Efficient C−N Coupling toward the Electrosynthesis of Urea
Antisolvent effects in green solvent engineering of FA-based quasi-2D Ruddlesden–Popper perovskite films for efficient solar cells
Nucleophilic Substitution Enables MXene Maximum Capacitance and Improved Stability
Dual Polarization of Ni Sites at VO<sub>x</sub>−Ni<sub>3</sub>N Interface Boosts Ethanol Oxidation Reaction
Engineering <scp>Pt‐Cu</scp> diatomics electrocatalysts enables highly efficient urea synthesis
Stabilizing 4.6 V LiCoO<sub>2</sub> via Er and Mg Trace Doping at Li‐Site and Co‐Site Respectively
Enhancing the Structural Stability of LiCoO<sub>2</sub> at Elevated Voltage via High-Valence Sb Doping
Free‐Standing Si@C/CNFs Prepared by Simple Electrospinning as a Stable Anode for Lithium‐Ion Batteries
Targeting microbiota–immune–synaptic plasticity to explore the effect of tea polyphenols on improving memory in the aged type 2 diabetic rat model
First-principles screening of Cu-based single-atom alloys for highly efficient electrocatalytic nitrogen reduction
Efficient Electrocatalytic Ammonia Synthesis via Theoretical Screening of Titanate Nanosheet-Supported Single-Atom Catalysts
Asymmetric Coupled Binuclear‐Site Catalysts for Low‐Temperature Selective Acetylene Semi‐Hydrogenation
Improving the Selectivity and Stability of Supported Cobalt Catalysts via Static Bi‐Doping and Dynamic Trace CO<sub>2</sub> Co‐Feeding During Propane Dehydrogenation
Iron Monomers or Trimers on Nitrogen-Doped Carbon: Which Is Better for the Electrocatalytic Nitrogen Reduction Reaction?