Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Advancements in Battery Materials, 2D Materials and Applications, Electrocatalysts for Energy Conversion, and MXene and MAX Phase Materials.
Iron phosphide/carbon nanotube composite with high-performance and decoupled areal capacity as negative electrodes for asymmetric supercapacitors
Moisture‐Resistant Thermoplastic Polyurethane Encapsulation for Flexible Perovskite Solar Cells
Electronic structure and geometric construction modulation of carbon-based single/dual atom catalysts for electrocatalysis
Empowering sustainable development: revolutionizing agricultural green total factor productivity through rural digitalization
Slight compositional variation-induced structural disorder-to-order transition enables fast Na+ storage in layered transition metal oxides
LiF involved interphase layer enabling thousand cycles of LAGP-based solid-state Li metal batteries with 80% capacity retention
Isolated Single-Atom Ni–N<sub>5</sub> Catalytic Site in Hollow Porous Carbon Capsules for Efficient Lithium–Sulfur Batteries
Atomic-Step Enriched Ruthenium–Iridium Nanocrystals Anchored Homogeneously on MOF-Derived Support for Efficient and Stable Oxygen Evolution in Acidic and Neutral Media
Interfacial optimization of PtNi octahedrons@Ti3C2MXene with enhanced alkaline hydrogen evolution activity and stability
Hierarchically structured diamond composite with exceptional toughness
Activating Basal Planes of NiPS<sub>3</sub> for Hydrogen Evolution by Nonmetal Heteroatom Doping
Activating Basal Planes of NiPS3 for Hydrogen Evolution by Nonmetal Heteroatom Doping
High‐Yield Electrochemical Production of Large‐Sized and Thinly Layered NiPS<sub>3</sub> Flakes for Overall Water Splitting
Structural Distortion-Induced Charge Gradient Distribution of Co Ions in Delithiated LiCoO<sub>2</sub>Cathode
Inverted Pyramid Textured p-Silicon Covered with Co<sub>2</sub>P as an Efficient and Stable Solar Hydrogen Evolution Photocathode
Nickel-graphene nanocomposite with improved electrochemical performance for La 0.7 Mg 0.3 (Ni 0.85 Co 0.15 ) 3.5 electrode