Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Supercapacitor, Graphene, Electrolyte, Activated carbon, and Sulfur.
Decoding selectivity: computational insights into AKR1B1 and AKR1B10 inhibition
Asymptotic dispersion engineering for ultra-broadband meta-optics
A Mott–Schottky Heterogeneous Layer for Li–S Batteries: Enabling Both High Stability and Commercial‐Sulfur Utilization
Ultrafast pore-tailoring of dense microporous carbon for high volumetric performance supercapacitors in organic electrolyte
Balancing charge dissipation and generation: mechanisms and strategies for achieving steady-state charge of contact electrification at interfaces of matter
A high-throughput screening permeability separator with high catalytic conversion kinetics for Li–S batteries
Mechanochemical destruction and mineralization of solid-phase hexabromocyclododecane assisted by microscale zero-valent aluminum
Effect of ultramicropores and inner space of carbon materials on the capacitive sodium storage performance
Large-surface-area activated carbon with high density by electrostatic densification for supercapacitor electrodes
Enabling high surface and space utilization of activated carbon for supercapacitors by homogeneous activation
3D interconnected porous carbon derived from spontaneous merging of the nano-sized ZIF-8 polyhedrons for high-mass-loading supercapacitor electrodes
Ultrafast Pore-Tailoring Of Dense Microporous Carbon for High Volumetric Performance Supercapacitors in Organic Electrolyte
Sandwiching Sulfur into the Dents Between N, O Co-Doped Graphene Layered Blocks with Strong Physicochemical Confinements for Stable and High-Rate Li–S Batteries
Boosting the supercapacitor performance of activated carbon by constructing overall conductive networks using graphene quantum dots
Floating robotic insects to obtain electric energy from water surface for realizing some self-powered functions