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Understanding the role of underlayers and overlayers in thin film hematite photoanodes

机译:了解底层和覆盖层在薄膜赤铁矿光阳极中的作用

摘要

Recent research on photoanodes for photoelectrochemical water splitting has introduced the concept of under- and overlayers for the activation of ultrathin hematite films. Their effects on the photocatalytic behavior were clearly shown; however, the mechanism is thus far not fully understood. Herein, the contribution of each layer is analyzed by means of electrochemical impedance spectroscopy, with the aim of obtaining a general understanding of surface and interface modifications and their influence on the hematite photoanode performance. This study shows that doping of the hematite from the underlayer and surface passivation from annealing treatments and an overlayer are key parameters to consider for the design of more efficient iron oxide electrodes. Understanding the contribution of these layers, a new design for ultrathin hematite films employing a combination of a gallium oxide overlayer with thin niobium oxide and silicon oxide underlayers is shown to achieve a photocurrent onset potential for the photoelectrochemical oxidation of water more negative than 750 mV versus the reversible hydrogen electrode (RHE) at pH 13.6, utilizing Co-Pi as a water oxidation catalyst. It is demonstrated that multilayer hematite thin film photoanodes are a strategy to reduce the overpotential for this material, thereby facilitating more efficient tandem cells.
机译:用于光电化学水分解的光阳极的最新研究已经引入了用于超薄赤铁矿膜活化的底层和覆盖层的概念。清楚地表明了它们对光催化行为的影响。然而,该机制迄今尚未完全被理解。本文中,通过电化学阻抗谱分析了各层的贡献,目的是获得对表面和界面改性及其对赤铁矿光阳极性能的影响的一般理解。这项研究表明,来自底层的赤铁矿的掺杂以及来自退火处理和顶层的表面钝化是设计更高效的氧化铁电极时要考虑的关键参数。了解了这些层的作用后,采用超薄赤铁矿薄膜的新设计表明,将氧化镓外层与薄氧化铌和氧化硅底层结合使用,可实现水的光电化学氧化的光电流起始电位比750 mV负。 pH为13.6的可逆氢电极(RHE),利用Co-Pi作为水氧化催化剂。已证明,多层赤铁矿薄膜光电阳极是一种减少这种材料过电势的策略,从而促进了更高效的串联电池。

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