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钒酸铋/磷酸钾界面处的光诱导表面反应

Light-Induced Surface Reactions at the Bismuth Vanadate/Potassium Phosphate Interface.

作者信息

Favaro Marco, Abdi Fatwa F, Lamers Marlene, Crumlin Ethan J, Liu Zhi, van de Krol Roel, Starr David E

机构信息

Institute for Solar Fuels, Helmholtz-Zentrum Berlin für Materialien und Energie GmbH , Berlin 14109, Germany.

Advanced Light Source, Lawrence Berkeley National Laboratory , Berkeley, California 94720, United States.

出版信息

J Phys Chem B. 2018 Jan 18;122(2):801-809. doi: 10.1021/acs.jpcb.7b06942. Epub 2017 Sep 18.

Abstract

Bismuth vanadate has recently drawn significant research attention as a light-absorbing photoanode due to its performance for photoelectrochemical water splitting. In this study, we use in situ ambient pressure X-ray photoelectron spectroscopy with "tender" X-rays (4.0 keV) to investigate a polycrystalline bismuth vanadate (BiVO) electrode in contact with an aqueous potassium phosphate (KPi) solution at open circuit potential under both dark and light conditions. This is facilitated by the creation of a 25 to 30 nm thick electrolyte layer using the "dip-and-pull" method. We observe that under illumination bismuth phosphate forms on the BiVO surface leading to an increase of the surface negative charge. The bismuth phosphate layer may act to passivate surface states observed in photoelectrochemical measurements. The repulsive interaction between the negatively charged surface under illumination and the phosphate ions in solution causes a shift in the distribution of ions in the thin aqueous electrolyte film, which is observed as an increase in their photoelectron signals. Interestingly, we find that such changes at the BiVO/KPi electrolyte interface are reversible upon returning to dark conditions. By measuring the oxygen 1s photoelectron peak intensities from the phosphate ions and liquid water as a function of time under dark and light conditions, we determine the time scales for the forward and reverse reactions. Our results provide direct evidence for light-induced chemical modification of the BiVO/KPi electrolyte interface.

摘要

钒酸铋作为一种光吸收光阳极,因其在光电化学水分解方面的性能,最近受到了广泛的研究关注。在本研究中,我们使用原位常压X射线光电子能谱,结合“软”X射线(4.0 keV),来研究在暗态和光照条件下,处于开路电位的多晶钒酸铋(BiVO)电极与磷酸钾(KPi)水溶液接触的情况。通过“浸拉”法形成25至30纳米厚的电解质层有助于实现这一研究。我们观察到,在光照下,BiVO表面会形成磷酸铋,导致表面负电荷增加。磷酸铋层可能起到钝化光电化学测量中观察到的表面态的作用。光照下带负电荷的表面与溶液中的磷酸根离子之间的排斥相互作用,会导致薄水合电解质膜中离子分布的变化,这表现为它们光电子信号的增加。有趣的是,我们发现回到暗态时,BiVO/KPi电解质界面的这种变化是可逆的。通过测量在暗态和光照条件下,磷酸根离子和液态水中氧1s光电子峰强度随时间的变化,我们确定了正向和逆向反应的时间尺度。我们的结果为BiVO/KPi电解质界面的光诱导化学修饰提供了直接证据。

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