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钒酸铋光电极具有高光电压,可用作光电化学电池中的光阴极和对电极进行水分解。

Bismuth Vanadate Photoelectrodes with High Photovoltage as Photoanode and Photocathode in Photoelectrochemical Cells for Water Splitting.

机构信息

Institute of Science, Engineering, and Technology (ICET), Federal University of the Jequitinhonha and Mucuri Valleys (UFVJM), Campus Mucuri, 39803-371, Teófilo Otoni, Minas Gerais, Brazil.

Graduate Program in Biofuels, UFVJM, Campus JK, 39100-000, Diamantina, Minas Gerais, Brazil.

出版信息

ChemSusChem. 2018 Feb 9;11(3):589-597. doi: 10.1002/cssc.201701929. Epub 2018 Jan 17.

Abstract

Using dual-photoelectrode photoelectrochemical (PEC) devices based on earth-abundant metal oxides for unbiased water splitting is an attractive means of producing green H fuel, but is challenging, owing to low photovoltages generated by PEC cells. This problem can be solved by coupling n-type BiVO with n-type Bi V O to create a virtual p/n junction due to the formation of a hole-inversion layer at the semiconductor interface. Thus, photoelectrodes with high photovoltage outputs were synthesized. The photoelectrodes exhibited features of p- and n-type semiconductors when illuminated under an applied bias, suggesting their use as photoanode and photocathode in a dual-photoelectrode PEC cell. This concept was proved by connecting a 1 mol % W-doped BiVO /Bi V O photoanode with an undoped BiVO /Bi V O photocathode, which produced a high photovoltage of 1.54 V, sufficient to drive stand-alone water splitting with 0.95 % efficiency.

摘要

使用基于丰富金属氧化物的双光电化学(PEC)器件进行无偏析水分解是生产绿色 H 燃料的一种有吸引力的方法,但由于 PEC 电池产生的光电压较低,因此具有挑战性。通过将 n 型 BiVO 与 n 型 BiVO 耦合,由于在半导体界面形成空穴反转层,可创建虚拟 p/n 结,从而解决此问题。因此,合成了具有高光电压输出的光电电极。当在施加偏压下照射时,光电电极表现出 p 型和 n 型半导体的特征,表明其可用作双光电化学电池中的光阳极和光阴极。通过将 1mol% W 掺杂的 BiVO/BiVO 光阳极与未掺杂的 BiVO/BiVO 光阴极相连,证明了这一概念,该电池产生了 1.54V 的高光电压,足以驱动独立的水分解,效率为 0.95%。

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