Area of research
Catalysis · Materials Chemistry
Research interest
Research focused on Wound healing and Catalysis, with related work in Self-healing hydrogels, Selectivity, Candida albicans. Notable publications include 'Design of catalysts for selective CO2 hydrogenation', 'Dynamic confinement catalysis in Fe-based CO2 hydrogenation to light olefins', and 'A Boron‐Based Probe Driven Theranostic Hydrogel Dressing for Visual Monitoring and Matching Chronic Wound Healing'.
Design of catalysts for selective CO2 hydrogenation
Lutein-loaded multifunctional hydrogel dressing based on carboxymethyl chitosan for chronic wound healing
A remotely triggered phase change hydrogel dressing for controlled release and promoting healing of infected wounds
Magnetic nanoporous carbon-based self-enriched and self-cleaning recyclable substrate Co/C@Ag/g-C3N4 for SERS detection and photocatalytic degradation of malachite green
Synergistic Electric Field-Driven Dual Charge Transfer in Graphitic Carbon Nitride/SnO <sub>2-x</sub> Heterojunctions for Enhanced Electrochemiluminescence Biosensing
Traditional Herb (Moxa) Modified Zinc Oxide Nanosheets for Quick, Efficient and High Tissue Penetration Therapy of Fungal Infection
Dynamic confinement catalysis in Fe-based CO2 hydrogenation to light olefins
A Boron‐Based Probe Driven Theranostic Hydrogel Dressing for Visual Monitoring and Matching Chronic Wound Healing
A method of quasi in-situ EBSD observation for microstructure and damage evolution in fatigue and dwell fatigue of Ti alloys