Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Heterojunction and Bioproduction, with related work in Montmorillonite, Autophagy, Photocatalysis. Notable publications include 'Engineering Defect-Mediated S-scheme heterojunctions in MOF-Derived N-doped NiO porous microrods and ZnIn2S4 nanosheets for superior photocatalytic hydrogen evolution', 'Tuning architectural organization of eukaryotic P450 system to boost bioproduction in Escherichia coli', and 'Organic acids promote the generation of reactive oxygen species by Fe(III)-modified montmorillonite: Unraveling the Cr(VI) reduction mechanism'.
Oleanolic acid ameliorates podocyte injury by increasing autophagy to attenuate diabetic nephropathy
Engineering Defect-Mediated S-scheme heterojunctions in MOF-Derived N-doped NiO porous microrods and ZnIn2S4 nanosheets for superior photocatalytic hydrogen evolution
Tuning architectural organization of eukaryotic P450 system to boost bioproduction in Escherichia coli
Organic acids promote the generation of reactive oxygen species by Fe(III)-modified montmorillonite: Unraveling the Cr(VI) reduction mechanism