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Crystalline Fe2O3/Fe2TiO5 heterojunction nanorods with efficient charge separation and hole injection as photoanode for solar water oxidation

机译:具有高效电荷分离和空穴注入功能的结晶Fe2O3 / Fe2TiO5异质结纳米棒作为太阳能阳极的光阳极

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We have constructed a Fe2O3/Fe2TiO5 heterojunction based photoanode deposited on Fluorine Doped Tin Oxide (FTO) substrate by initially fabricating hematite (Fe2O3) nanorods and subsequently pseudobrookite (Fe2TiO5) nanoporous thin film on top of them. Comparatively lower annealing temperature of 650 degrees C (usually 750 degrees C or above) was used to avoid degradation of FTO. The crystalline Fe2O3/Fe2TiO5 heterojunction shows a considerable enhancement in photocurrent density ca. 1.4 mA/cm(2) and high surface charge separation efficiency of 85% at operating voltage of 1.23 V vs RHE as compared to its constituents. The crystalline heterojunction showed overall improvement in performance due to enhanced charge separation owing to the favorable band alignment with Fe2O3 nanorods and efficient injection of photogenerated holes through surface states into the electrolyte observed through Electrochemical Impedance Spectroscopy. (C) 2016 Published by Elsevier Ltd.
机译:我们通过首先制造赤铁矿(Fe2O3)纳米棒,然后再在其顶部制造假板钛矿(Fe2TiO5)纳米多孔薄膜,构造了沉积在掺氟氧化锡(FTO)衬底上的基于Fe2O3 / Fe2TiO5异质结的光阳极。为了避免FTO退化,使用了较低的650摄氏度(通常为750摄氏度或更高)的退火温度。结晶的Fe2O3 / Fe2TiO5异质结显示出光电流密度ca显着提高。与它的组成相比,在1.23 V vs. RHE的工作电压下,具有1.4 mA / cm(2)和85%的高表面电荷分离效率。由于与Fe2O3纳米棒的良好能带对齐以及通过表面态将光生空穴有效注入到电解质中(通过电化学阻抗谱观察),由于增强了电荷分离,结晶异质结表现出整体性能的提高。 (C)2016由Elsevier Ltd.出版

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