Special Doctoral Program for Green Energy Conversion Science and Technology, Integrated Graduate School of Medicine, Engineering, and Agricultural Sciences, University of Yamanashi, 4-3-11 Takeda, Kofu, Yamanashi 400-8511, Japan.
Chem Commun (Camb). 2018 Jul 12;54(57):7999-8002. doi: 10.1039/c8cc02942c.
We facilely prepared a solid-state heterojunction photocatalyst in which zinc rhodium oxide (ZnRh2O4) and bismuth vanadium oxide (Bi4V2O11) as hydrogen (H2) and oxygen (O2) evolution photocatalysts, respectively, were connected with gold (Au) to generate ZnRh2O4/Au/Bi4V2O11. ZnRh2O4/Au/Bi4V2O11 photocatalyzed the overall pure-water splitting under irradiation with red light at wavelengths of up to 740 nm.
我们轻松地制备了一种固态异质结光催化剂,其中锌铑氧化物(ZnRh2O4)和铋钒氧化物(Bi4V2O11)分别作为产氢(H2)和产氧(O2)光催化剂,并与金(Au)相连,生成 ZnRh2O4/Au/Bi4V2O11。ZnRh2O4/Au/Bi4V2O11 在波长高达 740nm 的红光照射下,光催化全分解纯水。