화학공학소재연구정보센터
Inorganic Chemistry, Vol.58, No.22, 15590-15601, 2019
Construction of Heterogenous S-C-S MoS2/SnS2/r-GO Heterojunction for Efficient CO2 Photoreduction
Photocatalytic reduction of CO2 by semiconductors is of great significance in generating value-added fuels. Here, we construct a novel S-C-S heterojunction constituted of MoS2/SnS2/r-GO by a simple solvothermal method. The prepared MoS2/SnS2/r-GO showed significant photoexcitation of photosensitive oxygen (ROS) by electron spin resonance spectroscopy, demonstrating that superoxide radicals (O-center dot(2)-), pores, and hydroxyl radicals ((OH)-O-center dot) are the main active species. The constructed S-C-S heterojunction has a multilevel electron transport mechanism and synergistic effect, which provides the possibility of producing more organic fuel. The photocatalytic materials were characterized by XRD, XPS, SEM, TEM, PL, etc. As a result, the atomic layer MoS2/SnS2/r-GO heterojunction exhibited a CO formation rate of 68.53 mu mol g(-1) h(-1) and a CH4 formation rate of 50.55 mu mol( )g(-1)h(-1). respectively. This work opens up new prospects for the formation of heterojunctions of chalcogenide transition-metal sulfides.