Area of research
Electronic, Optical and Magnetic Materials · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Supercapacitor, Graphene, Capacitance, Carbon fibers, and Chemical engineering.
A coal-derived carbon fiber scaffold with superior mechanical robustness for ultra-stable lithium metal anodes
S-scheme Bi2MoO6/BiOBr heterostructure for effective removal of dye: Synergistic mechanism insight of adsorption-photocatalysis
Application of capacitive deionization in heavy metal ions removal and recovery: A review
A low dose KOH activation method is used to prepare starch-based porous carbon for high performance supercapacitors
Engineering cycling of Cu2+/Cu+ pairs in Bi2WO6 nanoflowers for boosting photocatalytic CO2 reduction
Reasonable construction of BiOBr/Bi-MOF S-scheme heterojunction in situ introduced by Bi-MOF for efficient photocatalytic reduction of CO2 to CO
2D/2D layered Bi12O15Cl6/Bi4O5Br2 heterostructure facilitated photocatalytic CO2 reduction in aerobic environments
Regulating the delocalization of Bi 6p orbital by halide doping in BiOCl for excellent photocatalytic performance
Efficient dye removal via self-supported Bi2MoO6/CF: PMS activation mechanism and photodegradation pathway
A novel dual-channel ZnIn2S4/Bi4Ti3O12 S heterojunction significantly enhances photocatalytic hydrogen peroxide synthesis
Phase-engineered CoP-Co2P/coal-based carbon fibers composite as self-supporting electrocatalyst for efficient overall water splitting
Delocalization of Bi3+ ions in BiOCl induced by Bi-S bonds for highly selective photoreduction of CO2 to CO
Defect-repair in carbon for fast and stable potassium and sodium storage
Construction of In4/3P2S6 nanosheets uniformly dispersed on rGO for enhanced sodium ion storage performance
Electrochemical graft of polymer molecules on carbon fibers surfaces to construct high-performance carbon fiber/epoxy composites with micrometer-scale interphases
Synthesis of linear amylose-based porous carbon via low-dosage KOH activation for high-performance supercapacitors
Constructing robust C–N bonding interphases of carbon fiber/epoxy composites via the electrode-switching electrochemical surface treatment of carbon fibers
Defective CQDs modified Bi4O5Br2 to construct S-scheme heterostructure for efficient photocatalytic CO2 reduction and pollutant degradation
Engineering CQDs/Bi2WO6 heterostructure for efficient photocatalytic CO2 reduction and degradation dye via S-scheme charge transfer
Highly separation of phenolics from coal tar by quaternary ammonium salt-based deep eutectic solvents
Dual-engineered interfacial strategies for carbon fiber/epoxy composites: Synergy of chemical C–N bonds and nanoscale mechanical interlocks
Revealing the nature of asymmetric Lewis acid sites by dual-orbital hybridization in Tb-BiO1-xCl/BiO1-xCl homostructure for superior photocatalytic performance
Regulation of electronic structure and enhancement of potassium storage performance in NbSSe nanosheets facilitated by intermolecular heterojunctions
A molecular configuration-driven interfacial engineering strategy for constructing high-performance carbon fiber/epoxy composites
Molecule Engineering on Copper‐Based Electrocatalyst Toward Electrocatalytic C─N Coupling for Urea Synthesis
Rod-Shaped Bi<sub>2</sub>Se<sub>3</sub> Prepared by Alkoxide Precursors for High-Performance Aqueous Zinc-Ion Batteries
Bi/S asymmetric dual active sites of VBi-Bi4O5Br2/VS-Bi19Br3S27 induce the built-in electric field for efficiently CO2 reduction
Flexible self-supporting electrodes by grafting SnS2 nanosheets with expanded interlayer spacing on carbon nanofibers for high-performance capacitive deionization
BiOBr Nanosheets Prepared from a Mixture of Bi(NO <sub>3</sub> ) <sub>3</sub> ·5H <sub>2</sub> O and Bi-MOFs with Exposed (110) Facets for Photocatalytic Degradation of Organic Dye
Electrochemical Graft of Polymer Molecules on Carbon Fibers Surfaces to Construct High-Performance Carbon Fiber/Epoxy Composites with Micrometer-Scale Interphases