Area of research
Renewable Energy, Sustainability and the Environment · Inorganic Chemistry
Research interest
Research interests include Metamaterial absorber, Terahertz radiation, Metamaterial, Materials science, Optics, and Split-ring resonator.
3D NiCoP flowers assembled by 2D carbon-coated nanosheets as an efficient and stable positive electrode for supercapacitors
Synergistic Ru/RuO2 heterojunctions stabilized by carbon coating as efficient and stable bifunctional electrocatalysts for acidic overall water splitting
Hollow NiMo-based nitride heterojunction with super-hydrophilic/aerophobic surface for efficient urea-assisted hydrogen production
Synthesis and HER properties of honeycomb Mo2WS6/NF nanorod array solid solution alloys
Fine-tune the electronic structure in Co-Mo based catalysts to give easily coupled HER and OER catalysts for effective water splitting
A high <i>Q</i>-factor dual-band terahertz metamaterial absorber and its sensing characteristics
Recent advances in tailoring zeolitic imidazolate frameworks (ZIFs) and their derived materials based on hard template strategy for multifunctional applications
Dual-band terahertz absorber based on square ring metamaterial structure
Ultrathin black TiO<sub>2</sub> nanosheet-assembled microspheres with high stability for efficient solar-driven photocatalytic hydrogen evolution
The synergy of Co-MoN-MgO on 2D carbon sheets for effective catalytic hydrogenation
Few-layered MoS2 anchored on 2D porous C3N4 nanosheets for Pt-free photocatalytic hydrogen evolution
Two-dimensional assembly made up of ZIF-8 particles for the high-efficient capture of the iodine and dyes
Fully conversing and highly selective oxidation of benzene to phenol based on MOFs-derived CuO@CN photocatalyst
Synchronous regulation of morphology and electronic structure of FeNi-P nanosheet arrays by Zn implantation for robust overall water splitting
2D porous molybdenum nitride/cobalt nitride heterojunction nanosheets with interfacial electron redistribution for effective electrocatalytic overall water splitting
Hollow CoP spheres assembled from porous nanosheets as high-rate and ultra-stable electrodes for advanced supercapacitors
Integration of heterointerface and porosity engineering to achieve efficient hydrogen evolution of 2D porous NiMoN nanobelts coupled with Ni particles
Electronic Tuning of Ni by Mo Species for Highly Efficient Hydroisomerization of <i>n</i>-Alkanes Comparable to Pt-Based Catalysts
Porous cobalt/tungsten nitride polyhedra as efficient bifunctional electrocatalysts for overall water splitting
Surface curvature-confined strategy to ultrasmall nickel-molybdenum sulfide nanoflakes for highly efficient deep hydrodesulfurization
A “competitive occupancy” strategy toward Co–N<sub>4</sub> single-atom catalysts embedded in 2D TiN/rGO sheets for highly efficient and stable aromatic nitroreduction
Trace Pt Clusters Dispersed on SAPO‐11 Promoting the Synergy of Metal Sites with Acid Sites for High‐Effective Hydroisomerization of <i>n</i>‐Alkanes
Ultra-small Mo<sub>2</sub>N on SBA-15 as a highly efficient promoter of low-loading Pd for catalytic hydrogenation