Area of research
Electronic, Optical and Magnetic Materials · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Boron nitride, Anode, Graphene, Atomic layer deposition, and Photocathode.
Methods for Preparation of Hexagonal Boron Nitride Nanomaterials
Engineered nitrogen doping on VO2(B) enables fast and reversible zinc-ion storage capability for aqueous zinc-ion batteries
Large-surface-area porous monolith of graphene for electrochemical capacitive deionization
Boosting Fast and Stable Alkali Metal Ion Storage by Synergistic Engineering of Oxygen Vacancy and Amorphous Structure
A CoSe–C@C core–shell structure with stable potassium storage performance realized by an effective solid electrolyte interphase layer
Flexible conductive polymer composite materials based on strutted graphene foam
Constructing ultrastable electrode/electrolyte interface for rapid potassium ion storage capability via salt chemistry and interfacial engineering
Porous monolith of few-layered boron nitride for effective water cleanup
Spherical Superstructure of Boron Nitride Nanosheets Derived from Boron-Containing Metal–Organic Frameworks
Biomass-Derived Carbon Paper to Sandwich Magnetite Anode for Long-Life Li-Ion Battery
Improved Li<sup>+</sup> Storage through Homogeneous N‐Doping within Highly Branched Tubular Graphitic Foam
Multifunctional Superelastic Foam-Like Boron Nitride Nanotubular Cellular-Network Architectures
Improving Hematite-based Photoelectrochemical Water Splitting with Ultrathin TiO<sub>2</sub> by Atomic Layer Deposition
Forming Buried Junctions to Enhance the Photovoltage Generated by Cuprous Oxide in Aqueous Solutions
Solar Hydrogen Generation by Silicon Nanowires Modified with Platinum Nanoparticle Catalysts by Atomic Layer Deposition
Phase selective synthesis of metastable orthorhombic Cu2ZnSnS4
Porous copper zinc tin sulfide thin film as photocathode for double junction photoelectrochemical solar cells