Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Supercapacitor Materials and Fabrication, Advancements in Battery Materials, Advanced Battery Materials and Technologies, and Optical Network Technologies.
High Sulfur Incorporation in Carbon Anodes via Safe Molten-Salt-Assisted Sulfate Doping for Ultrastable Sodium-Ion Batteries.
In Situ Fragmentation of Bimetallic Sulfides to Construct Ultrafine MoS
<sub>2</sub>
/SnS
<sub>2</sub>
Heterostructures Embedded in Carbon Frameworks for Enhanced Sodium Storage
Artificial intelligence: A key fulcrum for addressing complex environmental health issues
Which Pollutants Should Be Prioritized for Control in Multipollutant Complex Contaminated Groundwater of Chemical Industrial Parks?
Recent advances in NIR-II photothermal and photodynamic therapies for drug-resistant wound infections
Evidence of Quasi-Na Metallic Clusters in Sodium Ion Batteries through In Situ X-Ray Diffraction.
Characterization of multi-pollutant air quality in China using health-centric air pollution indices
Nitrogen-enriched, hierarchical porous carbon anodes for high-rate and durable sodium storage
Ultrathin carbon nanosheets with carbon composite structure of amorphous carbon and pseudo-graphite domains for high-capacity, stable and fast potassium storage
Small PbS Nanocubes Embedded in Carbon Shells for Na Storage
Flexible hard−soft carbon heterostructure based on mesopore confined carbonization for ultrafast and highly durable sodium storage
Engineering Ultrathin Carbon Layer on Porous Hard Carbon Boosts Sodium Storage with High Initial Coulombic Efficiency.
P2/O3 Biphasic Layered Oxide Heterojunction: A Cathode for High-Capacity Sodium-Ion Batteries
Edge Graphitized Oxygen-Rich Carbon Based on Stainless Steel-Assisted High-energy Ball Milling for High-Capacity and Ultrafast Sodium Storage.
Superlattice-like alternating layered Zn2SiO4/C with large interlayer spacing for high-performance sodium storage
High-Energy Ball Milling Promoted Sulfur Immobilization for Constructing High-Performance Na-Storage Carbon Anodes.
Surface-driven fast sodium storage enabled by Se-doped honeycomb-like macroporous carbon.
High-sulfur-doped hard carbon for sodium-ion battery anodes with large capacity and high initial coulombic efficiency
Engineering carbon nanosheets with hexagonal ordered conical macropores as high-performance sodium-ion battery anodes.
Microporous Carbon Nanospheres with Fast Sodium Storage Capability Enabled by Dominant Capacitive Behavior.
Electrochemical storage mechanism of sodium in carbon materials: A study from soft carbon to hard carbon
One-step large-scale fabrication of Bi@N-doped carbon for ultrahigh-rate and long-life sodium-ion battery anodes
Nitrogen, Sulfur, and Phosphorus Codoped Hollow Carbon Microtubes Derived from Silver Willow Blossoms as a High-Performance Anode for Sodium-Ion Batteries
Facile fabrication of carbon nanosheets with hierarchically porous structure for high-performance supercapacitor
Conjugated NH<sub>2</sub>‐Enhanced Cross‐Linked Polymer Anode for Lithium‐Ion Batteries with High Reversible Capacity and Superior Cycling Stability
Synthesis of Well-Defined Microporous Carbons by Molecular-Scale Templating with Polyhedral Oligomeric Silsesquioxane Moieties
Fabrication of novel polymeric and carbonaceous nanoscale networks by the union of self-assembly and hypercrosslinking
Templated Synthesis of Nitrogen‐Enriched Nanoporous Carbon Materials from Porogenic Organic Precursors Prepared by ATRP
Facile synthesis of MnO multi-core@nitrogen-doped carbon shell nanoparticles for high performance lithium-ion battery anodes
Preparation and lithium-storage performance of carbon/silica composite with a unique porous bicontinuous nanostructure