Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Graphene, Mesoporous material, Electrochemistry, Nanotechnology, and Anode.
Tailored Design of Mesoporous Metal Organic Framework Single Crystals by Kinetics‐Mediated Micelle Assembly for Efficient Asymmetrical Single‐Atom Catalysis
Tandem Assembly and Etching Chemistry towards Mesoporous Conductive Metal–Organic Frameworks for Sodium Storage Over 50,000 Cycles
Electron‐Donating Conjugation Effect Modulated Zn<sup>2+</sup> Reduction Reaction for Separator‐Free Aqueous Zinc Batteries
Ordered mesoporous nanofibers mimicking vascular bundles for lithium metal batteries
Versatile synthesis of uniform mesoporous superparticles from stable monomicelle units
Prioritizing Hetero‐Metallic Interfaces via Thermodynamics Inertia and Kinetics Zincophilia Metrics for Tough Zn‐Based Aqueous Batteries
Reviving Zn<sup>0</sup> Dendrites to Electroactive Zn<sup>2+</sup> by Mesoporous MXene with Active Edge Sites
Hollow Mesoporous Metal Organic Framework Single Crystals Enabled by Growth Kinetics Control for Enhanced Photocatalysis
Activating sulfur oxidation reaction<i>via</i>six-electron redox mesocrystal NiS2 for sulfur-based aqueous batteries
Constructing Unique Mesoporous Carbon Superstructures via Monomicelle Interface Confined Assembly
Modular super-assembly of hierarchical superstructures from monomicelle building blocks
Imparting multi-functionality to covalent organic framework nanoparticles by the dual-ligand assistant encapsulation strategy
Monodisperse Ultrahigh Nitrogen‐Containing Mesoporous Carbon Nanospheres from Melamine‐Formaldehyde Resin
Achieving Rich and Active Alkaline Hydrogen Evolution Heterostructures via Interface Engineering on 2D 1T‐MoS<sub>2</sub> Quantum Sheets
Porous MXenes: Synthesis, structures, and applications
Microwave-assisted ultrafast synthesis of adjustable bimetal phosphide/graphene heterostructures from MOFs for efficient electrochemical water splitting
Sub-5 nm Ultrasmall Metal–Organic Framework Nanocrystals for Highly Efficient Electrochemical Energy Storage
Rational design of three-dimensional graphene encapsulated core–shell FeS@carbon nanocomposite as a flexible high-performance anode for sodium-ion batteries
Microwave-assisted CVD-like synthesis of dispersed monolayer/few-layer N-doped graphene encapsulated metal nanocrystals for efficient electrocatalytic oxygen evolution
Double-Holey-Heterostructure Frameworks Enable Fast, Stable, and Simultaneous Ultrahigh Gravimetric, Areal, and Volumetric Lithium Storage
3D Graphene Composites for Efficient Electrochemical Energy Storage
Porous Fe<sub>2</sub>O<sub>3</sub> Nanoframeworks Encapsulated within Three-Dimensional Graphene as High-Performance Flexible Anode for Lithium-Ion Battery
Solution Synthesis of Semiconducting Two-Dimensional Polymer via Trimerization of Carbonitrile
Integration of Graphene, Nano Sulfur, and Conducting Polymer into Compact, Flexible Lithium–Sulfur Battery Cathodes with Ultrahigh Volumetric Capacity and Superior Cycling Stability for Foldable Devices
Integration of ultrathin graphene/polyaniline composite nanosheets with a robust 3D graphene framework for highly flexible all-solid-state supercapacitors with superior energy density and exceptional cycling stability
Graphene/polyaniline@carbon cloth composite as a high-performance flexible supercapacitor electrode prepared by a one-step electrochemical co-deposition method
Dispersion–Assembly Approach to Synthesize Three-Dimensional Graphene/Polymer Composite Aerogel as a Powerful Organic Cathode for Rechargeable Li and Na Batteries
Mechanochemical synthesis of two-dimensional aromatic polyamides