Area of research
Electronic, Optical and Magnetic Materials · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Graphene, Supercapacitor, Nanotechnology, Nanofiber, and Chemistry.
An integrated design for high-energy, durable zinc–iodine batteries with ultra-high recycling efficiency
A Comprehensive Review on Fabrication and Structural Design of Polymer Composites for Wearable Pressure Sensors
Thermal-Rectified Gradient Porous Nanocomposite Film Enabling Multiscenario Adaptive Radiative Cooling
Covalent-Bridged Heterointerfaces via Grafted Triazine Organic Polymers Enable Directed Charge Transfer for Efficient Oxygen Reduction in Zn–Air Batteries
4D Printed Shape Memory Polyimide Composite Aerogels with High Recovery Stress for Load Driving
Histidine‐Based “Transfer Stations” at Carbon‐Immobilized Metal Particles Enable Rapid Hydrogen Transfer for Efficient Formic Acid Dehydrogenation
Dual‐Zone Chloride Engineering to Enable Ultra‐Stable Two‐Electron Zinc‐Iodine Batteries
Phase‐Controlled Pd─S Nanosheet Aerogels for Electrocatalytic Upgrading of Waste Plastics
Interfacial Modification of Conjugated Coordination Polymers for Efficient and Selective Nitrogen Electroreduction to Ammonia
Regulating d-Band Center in Pt–Pd Metallene Aerogels for Enhanced Electrochemical Ethanol Reforming to Hydrogen
Dynamical Janus Interface Design for Reversible and Fast-Charging Zinc–Iodine Battery under Extreme Operating Conditions
Noble‐Metal‐Free High‐Entropy Alloy Nanoparticles for Efficient Solar‐Driven Photocatalytic CO<sub>2</sub> Reduction
Highly stable manganese oxide cathode material enabled by Grotthuss topochemistry for aqueous zinc ion batteries
Red Carbon Mediated Formation of Cu<sub>2</sub>O Clusters Dispersed on the Oxocarbon Framework by Fehling's Route and their Use for the Nitrate Electroreduction in Acidic Conditions
Charge Redistribution in High-Entropy Perovskite Oxide Porous Nanotubes Boosts Nitrate Electroreduction to Ammonia
High-Entropy Perovskite Oxides as a Family of Electrocatalysts for Efficient and Selective Nitrogen Oxidation
Hollow Stair-Stepping Spherical High-Entropy Prussian Blue Analogue for High-Rate Sodium Ion Batteries
4D-Printed Bionic Soft Robot with Superior Mechanical Properties and Fast Near-Infrared Light Response
Crystal‐Phase‐Engineered High‐Entropy Alloy Aerogels for Enhanced Ethylamine Electrosynthesis from Acetonitrile
Langmuir–Blodgett Film Formed by Amphiphilic Molecules for Facile and Rapid Construction of Zinc–Iodine Cell
Which dominates industrial–current–density CO<sub>2</sub>-to-C<sub>2+</sub> electroreduction: Cu<sup><i>δ</i>+</sup> or the microenvironment?
Cation-π interactions regulate electrocatalytic water oxidation over iridium single atoms supported on conjugated polymers
Atomically Dispersed Iridium on Polyimide Support for Acidic Oxygen Evolution
Inducing Directional Charge Delocalization in 3D‐Printable Micro‐Supercapacitors Based on Strongly Coupled Black Phosphorus and ReS<sub>2</sub> Nanocomposites
Rapid Photothermal-Responsive Soft Hydrogel Actuator Contained Ti<sub>3</sub>C<sub>2</sub>T<sub><i>x</i></sub> MXene and Laponite Clay with Enhanced Mechanical Properties
A high-entropy atomic environment converts inactive to active sites for electrocatalysis
Tuning Ion Transport at the Anode‐Electrolyte Interface via a Sulfonate‐Rich Ion‐Exchange Layer for Durable Zinc‐Iodine Batteries
Cation Substitution Strategy for Developing Perovskite Oxide with Rich Oxygen Vacancy-Mediated Charge Redistribution Enables Highly Efficient Nitrate Electroreduction to Ammonia
Highly permeable and ultrastretchable E-textiles with EGaIn-superlyophilicity for on-skin health monitoring, joule heating, and electromagnetic shielding
Tightly confined iodine in surface-oxidized carbon matrix toward dual-mechanism zinc-iodine batteries