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首页> 外文期刊>Electrochimica Acta >One-step preparation of optically transparent Ni-Fe oxide film electrocatalyst for oxygen evolution reaction
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One-step preparation of optically transparent Ni-Fe oxide film electrocatalyst for oxygen evolution reaction

机译:一步法制备用于氧气析出反应的光学透明Ni-Fe氧化物薄膜电催化剂

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摘要

Optically transparent cocatalyst film materials is very desirable for improved photoelectrochemical (PEC) oxygen evolution reaction (OER) over light harvesting photoelectrodes which require the exciting light to irradiate through the cocatalyst side, i.e., front-side illumination. In view of the reaction overpotential at electrode/electrolyte interface, the OER electrocatalysts have been extensively used as cocatalysts for PEC water oxidation on photoanode. In this work, the feasibility of a one-step fabrication of the transparent thin film catalyst for efficient electrochemical OER is investigated. The Ni-Fe bimetal oxide films, similar to 200 nm in thickness, are used for study. Using a reactive magnetron co-sputtering technique, transparent (> 50% in wavelength range 500-2000 nm) Ni-Fe oxide films with high electrocatalytic activities were successfully prepared at room temperature. Upon optimization, the as-prepared bimetal oxide film with atomic ratio of Fe/Ni = 3: 7 demonstrates the lowest overpotential for the OER in aqueous KOH solution, as low as 329 mV at current density of 2 mA cm(-2), which is 135 and 108 mV lower than that of as-sputtered FeOx and NiOx thin films, respectively. It appears that this fabrication strategy is very promising to deposit optically transparent cocatalyst films on photoabsorbers for efficient PEC water splitting. (C) 2015 Elsevier Ltd. All rights reserved.
机译:光学透明的助催化剂膜材料对于在光收集光电极上改善光电化学(PEC)析氧反应(OER)十分必要,光收集光电极需要激发光通过助催化剂侧(即正面照明)进行照射。鉴于电极/电解质界面处的反应超电势,OER电催化剂已被广泛用作光阳极上PEC水氧化的助催化剂。在这项工作中,研究了用于高效电化学OER的一步制备透明薄膜催​​化剂的可行性。 Ni-Fe双金属氧化物膜(厚度约200 nm)用于研究。使用反应磁控共溅射技术,在室温下成功制备了具有高电催化活性的透明(> 50%的波长范围为500-2000 nm)的Ni-Fe氧化物膜。经过优化,原子比为Fe / Ni = 3:7的双金属氧化物薄膜证明了KOH水溶液中OER的最低过电势,在2 mA cm(-2)的电流密度下低至329 mV,分别比溅射的FeOx和NiOx薄膜低135和108 mV。看来,这种制造策略非常有希望在光学吸收剂上沉积光学透明的助催化剂薄膜,以实现有效的PEC水分解。 (C)2015 Elsevier Ltd.保留所有权利。

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