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首页> 外文期刊>Catalysis Today >Sensitizing effects of BiVO4 and visible light induced production of highly reductive electrons in the TiO2/BiVO4 heterojunction
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Sensitizing effects of BiVO4 and visible light induced production of highly reductive electrons in the TiO2/BiVO4 heterojunction

机译:Bivo4和可见光诱导高度减少电子在TiO2 / Bivo4异质结中产生的敏感效应

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摘要

BiVO4 is an efficient and stable visible active photoanode material. However, due to its unfavorable conduction band position which falls below the H-2 reduction potential, it fails to carry out the complete water splitting reaction. On the other hand, larger band gap TiO2 is able to photocatalytically split water, thanks to its negative conduction band energy. Aiming at verifying the possibility of sensitizing TiO2 with BiVO4 and employing the so obtained composite material in photocatalytic water splitting under visible light, we prepared and photoelectrochemically characterized TiO2/BiVO4 heterojunction electrodes. The photocatalytic reduction of methyl viologen, an electron acceptor probe with a reduction potential close to that of protons, was used to evaluate the reducing ability of the photoactive materials under visible light. An apparently counterintuitive electron transfer from photoexcited BiVO4 to the TiO2 conduction band occurs in the TiO2/BiVO4 heterojunction, resulting in TiO2 sensitization and production of highly reductive electrons, which appears to be favored by the band alignment occurring at the heterojunction.
机译:BIVO4是一种高效且稳定的可见的有源光电码材料。然而,由于其低于H-2降低电位的不利的传导带位置,它不能进行完全的水分裂反应。另一方面,由于其负导带能量,较大的带隙TiO2能够光催化分割水。旨在验证用BIVO4敏化TiO 2的可能性,并在可见光下采用如此获得的复合材料在可见光下的光催化水分解,我们制备和光电化学表征TiO2 / Bivo4异质结电极。使用接近质子的减少电位的光催化还原甲基Viologen,电子受体探针,用于评估可见光下的光活性材料的降低能力。从光屏蔽Bivo4到TiO2导电带的明显逆向的电子转移发生在TiO2 / Bivo4异质结中,导致TiO2的敏化和产生高度还原电子,这似乎受到异质结的带对准的青睐。

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