Area of research
Electronic, Optical and Magnetic Materials · Organic Chemistry
Research interest
Research focused on Supercapacitor and Anode, with related work in Template, Electrolyte, Polystyrene. Notable publications include 'Reasonable design and synthesis of nickel manganese sulfide nanoparticles derived from metal organic frameworks as electrode materials for supercapacitors', 'Facile fabrication of CoNi-Layered Double Hydroxide /NiCo2S4/Reduced Graphene Oxide composites by in situ hydrothermal growth strategy for supercapacitor performance', and 'High-performance asymmetric supercapacitor constructed by MOF-derived Mn-Ni-Co sulfide hollow cages and Typha pollen-derived carbon'.
Construction of core-shell heterostructures Co3S4@NiCo2S4 as cathode and covalent organic framework derived carbon as anode for hybrid supercapacitors
Silver copper nanowires loaded with cobalt sulfide, and porous carbon derived from lotus seedpods for the manufacture of durable and high-capacity supercapacitor electrodes
High-performance asymmetric supercapacitor constructed by MOF-derived Mn-Ni-Co sulfide hollow cages and Typha pollen-derived carbon
Reasonable design and synthesis of nickel manganese sulfide nanoparticles derived from metal organic frameworks as electrode materials for supercapacitors
Facile fabrication of CoNi-Layered Double Hydroxide /NiCo2S4/Reduced Graphene Oxide composites by in situ hydrothermal growth strategy for supercapacitor performance
Size-controlled preparation of hollow silica spheres and glyphosate release