Area of research
Electronic, Optical and Magnetic Materials · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Supercapacitor, Electrolyte, Microporous material, Capacitance, and Carbon fibers.
Constructing the quinonyl groups and structural defects in carbon for supercapacitor and capacitive deionization applications
Hybrid nanoarchitectonics of coal-derived carbon with oxidation-induced morphology-selectivity for high-performance supercapacitor
Homogeneous activation induced by bacterial cellulose nanofibers to construct interconnected microporous carbons for enhanced capacitive storage
Ultrafast pore-tailoring of dense microporous carbon for high volumetric performance supercapacitors in organic electrolyte
Improving the surface area of metal organic framework-derived porous carbon through constructing inner support by compatible graphene quantum dots
Graphene quantum dot inlaid carbon nanofibers: Revealing the edge activity for ultrahigh rate pseudocapacitive energy storage
In‐situ expansion strategy towards hierarchical mesoporous carbon: Formation mechanism and application in supercapacitors
Carbon nanofiber@ZIF-8 derived carbon nanosheet composites with a core–shell structure boosting capacitive deionization performance
A dual‐activation strategy to tailor the hierarchical porous structure of biomass‐derived carbon for ultrahigh rate supercapacitor
From powders to freestanding electrodes: Assembly active particles into bacterial cellulose for high performance supercapacitors
Ultrafast Pore-Tailoring Of Dense Microporous Carbon for High Volumetric Performance Supercapacitors in Organic Electrolyte
Interconnected and hierarchical porous carbon derived from soybean root for ultrahigh rate supercapacitors
Enabling a Large Accessible Surface Area of a Pore-Designed Hydrophilic Carbon Nanofiber Fabric for Ultrahigh Capacitive Deionization
Preparation and property of extremely stable superhydrophobic carbon fibers with core-shell structure
Synthesis, luminescence properties and energy transfer behavior of color-tunable KAlP2O7: Tb3+, Eu3+ phosphors
Nitrogen and oxygen co-doped hierarchical porous carbon for high performance supercapacitor electrodes