Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Materials science, Catalysis, Tobermorite, Adsorption, Mesoporous material, and Chemical engineering.
Tunable Surface Charge Redistribution via Lattice Strain Engineering in B/Mo Co‐Doped NiV <sub>2</sub> O <sub>6</sub> for High‐Power Supercapacitors
A universal method to fabricate high-valence transition metal-based HER electrocatalysts and direct Raman spectroscopic evidence for interfacial water regulation
Tunable-pH Environment Induced by Local Anchor Effect of High Lewis Basicity Conductive Polymers toward Glycerol Upgrading Assisted Hydrogen Evolution
3D Bioprinting Using Synovium-Derived MSC-Laden Photo-Cross-Linked ECM Bioink for Cartilage Regeneration
Tunable d-band center of a NiFeMo alloy with enlarged lattice strain enhancing the intrinsic catalytic activity for overall water-splitting
Fabrication and characterization of porous, degradable, biocompatible poly(vinyl alcohol)/tannic acid/gelatin/hyaluronic acid hydrogels with good mechanical properties for cartilage tissue engineering
Enhanced electrocatalytic water splitting by adjusting the local reaction environment with nickel coordination regulation
Heterointerface engineering constructs microenvironment enhancing catalytic kinetics of Fe/Ni oxyhydroxide@FeNi alloy for overall water splitting
Silicon in Hollow Carbon Nanospheres Assembled Microspheres Cross‐linked with N‐doped Carbon Fibers toward a Binder Free, High Performance, and Flexible Anode for Lithium‐Ion Batteries
Adjustable Dimensionality of Microaggregates of Silicon in Hollow Carbon Nanospheres: An Efficient Pathway for High-Performance Lithium-Ion Batteries
Hydrothermal synthesis of mesoporous tobermorite from fly ash with enhanced removal performance towards Pb2+ from wastewater
Building Zn-Fe bimetal selenides heterostructures caged in nitrogen-doped carbon cubic for lithium and sodium ion batteries
Effective removal of Pb2+ and Cd2+ from wastewater by mesoporous tobermorite synthesized from alumina-extracted fly ash