Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research focused on Catalysis and Nanoporous, with related work in Microfiber, Nanoparticle, Degradation (telecommunications). Notable publications include 'Al-coordination polymer-derived nanoporous nitrogen-doped carbon microfibers as metal-free catalysts for oxygen electroreduction and acetalization reactions', 'Semi-enclosed Cu nanoparticles with porous nitrogen-doped carbon shells for efficient and tolerant nitrate electroreduction in neutral condition', and 'Coordination polymers-derived core-shell Co@N–C nanostructures as efficient dual functional catalysts for nitrate electroreduction and Fenton-like catalytic dye degradation'.
Coordination polymers-derived core-shell Co@N–C nanostructures as efficient dual functional catalysts for nitrate electroreduction and Fenton-like catalytic dye degradation
Semi-enclosed Cu nanoparticles with porous nitrogen-doped carbon shells for efficient and tolerant nitrate electroreduction in neutral condition
Al-coordination polymer-derived nanoporous nitrogen-doped carbon microfibers as metal-free catalysts for oxygen electroreduction and acetalization reactions