Area of research
Electronic, Optical and Magnetic Materials · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Anode, Electrolyte, Lithium (medication), Chemical engineering, and Silicon.
Mechanically robust, anti-freezing, and dual cross-linked alginate-polyacrylamide hydrogel electrolyte for flexible zinc ion hybrid capacitors (ZHCs) with enhanced wide temperature range
Dual cross-linked cellulose-based hydrogel for dendrites-inhibited flexible zinc-ion energy storage devices with ultra-long cycles and high energy density
A double cross-linked hydrogel electrolyte with high mechanical strength and excellent electrochemical performance for flexible supercapacitor and zinc ion capacitor
Hierarchically porous SiOx/C and carbon materials from one biomass waste precursor toward high-performance lithium/sodium storage
Dual carbon and void space confined SiOx/C@void@Si/C yolk-shell nanospheres with high-rate performances and outstanding cyclability for lithium-ion batteries anodes
In-situ low-temperature strategy from waste sugarcane leaves towards micro/meso-porous carbon network embedded nano Si-SiOx@C boosting high performances for lithium-ion batteries
In situ construction of bamboo charcoal derived SiOx embedded in hierarchical porous carbon framework as stable anode material for superior lithium storage
In Situ Electrospinning Synthesis of N‐Doped C Nanofibers with Uniform Embedding of Mn Doped MFe<sub>1−</sub><i><sub>x</sub></i>Mn<i><sub>x</sub></i>PO<sub>4</sub> (M = Li, Na) as a High Performance Cathode for Lithium/Sodium‐Ion Batteries
Y-doped Li4Ti5-xYxO12 with Y2Ti2O7 surface modification anode materials: Superior rate capability and ultra long cyclability for half/full lithium-ion batteries
Synthesis and characterization of novel renewable tung oil-based UV-curable active monomers and bio-based copolymers
Facile synthesis and electrochemical performances of activated bamboo charcoal supported MoS2 nanoflakes as anodes materials for lithium-ion batteries