Hydrogen generation from water using noble metal-free photocatalysts presents a promising platform for renewable and sustainable energy. Copper-based chalcogenides of earth-abundant elements, especially Cu2ZnSnS4 (CZTS), have recently arisen as a low-cost and environment-friendly material for photovoltaics and photocatalysis. Herein, we report a new heterostructure consisting of CZTS nanoparticles anchored onto a MoS2-reduced graphene oxide (rGO) hybrid. Using a facile two-step method, CZTS nanoparticles were in situ grown on the surface of MoS2-rGO hybrid, which generated high density of nanoscale interfacial contact between CZTS and MoS2-rGO hybrid. The photoexcited electrons of CZTS can be readily transported to MoS2 through rGO backbone...
Hydrogen evolution reaction through electrolysis holds great potential as a clean, renewable, and su...
Hydrogen evolution reaction through electrolysis holds great potential as a clean, renewable, and su...
Cu<sub>2</sub>ZnSnS<sub>4</sub>, based on abundant and environmental friendly elements and with a di...
Hydrogen generation from water using noble metal-free photocatalysts presents a promising platform f...
2016-2017 > Academic research: refereed > Publication in refereed journal201804_a bcmaVersion of Rec...
Noble metal-free cocatalysts have drawn great interest in accelerating the catalytic reactions of me...
Chalcogenide-based semiconductor-metal heterostructures are interesting catalysts for solar-to-chemi...
Solar water splitting using semiconductor photocatalysts is considered to be one of the economical a...
Efficient photo-electrocatalysts for hydrogen evolution reaction (HER) are synthesized using a facil...
Efficient photo-electrocatalysts for hydrogen evolution reaction (HER) are synthesized using a facil...
Heteroatom (N, B and P) doped reduced graphene oxide (RGO)-metal chalcogenide nanocomposites (RGO-Cd...
Cu2ZnSnS4, based on abundant and environmental friendly elements and with a direct band gap of 1.5 e...
The reduced graphene oxides(rGO) loaded-nano ZnS nanoparticles were fabricated by microwave heating ...
The technology of semiconductor-based photocatalytic water splitting to produce hydrogen using solar...
Coupling two semiconductors together to construct a Z-scheme type photocatalytic system is an effici...
Hydrogen evolution reaction through electrolysis holds great potential as a clean, renewable, and su...
Hydrogen evolution reaction through electrolysis holds great potential as a clean, renewable, and su...
Cu<sub>2</sub>ZnSnS<sub>4</sub>, based on abundant and environmental friendly elements and with a di...
Hydrogen generation from water using noble metal-free photocatalysts presents a promising platform f...
2016-2017 > Academic research: refereed > Publication in refereed journal201804_a bcmaVersion of Rec...
Noble metal-free cocatalysts have drawn great interest in accelerating the catalytic reactions of me...
Chalcogenide-based semiconductor-metal heterostructures are interesting catalysts for solar-to-chemi...
Solar water splitting using semiconductor photocatalysts is considered to be one of the economical a...
Efficient photo-electrocatalysts for hydrogen evolution reaction (HER) are synthesized using a facil...
Efficient photo-electrocatalysts for hydrogen evolution reaction (HER) are synthesized using a facil...
Heteroatom (N, B and P) doped reduced graphene oxide (RGO)-metal chalcogenide nanocomposites (RGO-Cd...
Cu2ZnSnS4, based on abundant and environmental friendly elements and with a direct band gap of 1.5 e...
The reduced graphene oxides(rGO) loaded-nano ZnS nanoparticles were fabricated by microwave heating ...
The technology of semiconductor-based photocatalytic water splitting to produce hydrogen using solar...
Coupling two semiconductors together to construct a Z-scheme type photocatalytic system is an effici...
Hydrogen evolution reaction through electrolysis holds great potential as a clean, renewable, and su...
Hydrogen evolution reaction through electrolysis holds great potential as a clean, renewable, and su...
Cu<sub>2</sub>ZnSnS<sub>4</sub>, based on abundant and environmental friendly elements and with a di...