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Improvement of the electron collection efficiency in porous hematite using a thin iron oxide underlayer: towards efficient all-iron based photoelectrodes

机译:使用薄的氧化铁底层提高多孔赤铁矿中电子的收集效率:朝着高效的全铁基光电极方向发展

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Different approaches have been explored to increase the water oxidation activity of nanostructured hematite (alpha-Fe2O3) photoanodes, including doping with various elements, surface functionalization with both oxygen evolving catalysts (OEC) and functional overlayers and, more recently, the introduction of ultrathin oxide underlayers as tunneling back contacts. Inspired by this latter strategy, we present here a photoanode design with a nanometric spin-coated iron oxide underlayer coupled with a mesoporous hematite film deposited by electrophoresis. The electrodes equipped with the thin underlayer exhibit a four-fold improvement in photoactivity over the simple hematite porous film, reaching a stable photocurrent density of ca. 1 mA cm(-2) at 0.65 V versus the saturated calomel electrode (SCE) at pH 13.3 (NaOH 0.1 M) under air mass (AM) 1.5G illumination. A further improvement to 1.5 mA cm(-2) is observed after decoration of the hematite surface with a Fe(III)-OEC. These results demonstrate that by combining different iron oxide morphologies, it is possible to improve the selectivity of the interfaces towards both electron collection at the back contact and hole transfer to the electrolyte, obtaining an efficient all-iron based photoelectrode entirely realized with simple wet solution scalable procedures.
机译:已探索出各种方法来提高纳米结构赤铁矿(α-Fe2O3)光阳极的水氧化活性,包括掺杂各种元素,用放氧催化剂(OEC)和功能性覆盖层进行表面功能化,最近还引入了超薄氧化物底层作为隧穿后触点。受到后一种策略的启发,我们在此介绍一种光阳极设计,该设计具有纳米旋涂氧化铁底层和通过电泳沉积的中孔赤铁矿膜。与简单的赤铁矿多孔膜相比,配备有薄下层的电极的光活性提高了四倍,达到了约600的稳定光电流密度。相对于饱和甘汞电极(SCE)在pH 13.3(NaOH 0.1 M)在空气质量(AM)1.5G照射下在0.65 V时为1 mA cm(-2)。用Fe(III)-OEC装饰赤铁矿表面后,观察到1.5 mA cm(-2)的进一步改善。这些结果表明,通过组合不同的氧化铁形态,可以提高界面对背触点处电子收集和空穴向电解质转移的选择性,从而获得了一种有效的全铁基光电极,该溶液完全可以通过简单的湿溶液实现可扩展程序。

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