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首页> 外文期刊>Physical chemistry chemical physics: PCCP >A heterojunction photocatalyst composed of zinc rhodium oxide, single crystal-derived bismuth vanadium oxide, and silver for overall pure-water splitting under visible light up to 740 nm
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A heterojunction photocatalyst composed of zinc rhodium oxide, single crystal-derived bismuth vanadium oxide, and silver for overall pure-water splitting under visible light up to 740 nm

机译:一种由氧化锌铑,单晶衍生的铋钒氧化物和银组成的异质结光催化剂,可在高达740 nm的可见光下进行全部纯水分解

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摘要

We recently reported the synthesis of a solid-state heterojunction photocatalyst consisting of zinc rhodium oxide (ZnRh2O4) and bismuth vanadium oxide (Bi4V2O11), which functioned as hydrogen (H-2) and oxygen (O-2) evolution photocatalysts, respectively, connected with silver (Ag). Polycrystalline Bi4V2O11 (p-Bi4V2O11) powders were utilized to form ZnRh2O4/Ag/p-Bi4V2O11, which was able to photocatalyze overall pure-water splitting under red-light irradiation with a wavelength of 700 nm (R. Kobayashi et al., J. Mater. Chem. A, 2016, 4, 3061). In the present study, we replaced p-Bi4V2O11 with a powder obtained by pulverizing single crystals of Bi4V2O11 (s-Bi4V2O11) to form ZnRh2O4/Ag/s-Bi4V2O11, and demonstrated that this heterojunction photocatalyst had enhanced water-splitting activity. In addition, ZnRh2O4/Ag/s-Bi4V2O11 was able to utilize nearly the entire range of visible light up to a wavelength of 740 nm. These properties were attributable to the higher O-2 evolution activity of s-Bi4V2O11.
机译:我们最近报道了由氧化锌铑(ZnRh2O4)和氧化铋钒(Bi4V2O11)组成的固态异质结光催化剂的合成,它们分别用作氢(H-2)和氧(O-2)析出光催化剂与银(Ag)。利用多晶Bi4V2O11(p-Bi4V2O11)粉末形成ZnRh2O4 / Ag / p-Bi4V2O11,它能够在波长为700 nm的红光照射下光催化整个纯水分解(R. Kobayashi等,J。 Mater.Chem.A,2016,4,3061)。在本研究中,我们用粉碎Bi4V2O11单晶(s-Bi4V2O11)形成ZnRh2O4 / Ag / s-Bi4V2O11的粉末代替了p-Bi4V2O11,证明该异质结光催化剂具有增强的水分解活性。此外,ZnRh2O4 / Ag / s-Bi4V2O11能够利用几乎整个可见光范围,直至740 nm的波长。这些性质归因于s-Bi4V2O11的较高O-2进化活性。

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