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Monolithic Photoassisted Water Splitting Device Using Anodized Ni-Fe Oxygen Evolution Catalytic Substrate

机译:阳极氧化Ni-Fe析氧催化基片整体光解水装置

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Large-scale industrial application of solar-driven water splitting has called for the development of oxygen evolution reaction (OER) catalysts that deliver high catalytic activity and stability. Here it is shown that an efficient OER catalytic substrate can be developed by roll-to-roll fabrication of electrodeposited Ni-Fe foils, followed by anodization. An amorphous oxyhydroxide layer directly formed on Ni-Fe foils exhibits high catalytic activity toward water oxidation in 1 m KOH solution, which requires an overpotential of 0.251 V to reach current density of 10 mA cm(-2). The developed catalytic electrode shows the best OER activity among catalysts with film structure. The catalyst also shows prolonged stability at vigorous gas evolution condition for 36 h. To demonstrate the monolithic photoassisted water splitting device, an amorphous silicon solar cell is fabricated on Ni-Fe catalytic substrate, resulting in lowering OER overpotential under light illumination. This monolithic device is the first demonstration that the OER catalytic substrates and the solar cells are integrated and can be easily applied for industrial scale solar-driven water electrolysis.
机译:太阳能驱动的水分解的大规模工业应用要求开发提供高催化活性和稳定性的氧析出反应(OER)催化剂。在此表明,可以通过卷对卷制造电沉积的镍铁箔,然后进行阳极氧化,开发出一种有效的OER催化基质。直接在Ni-Fe箔上形成的无定形羟基氧化物层在1 m KOH溶液中表现出对水氧化的高催化活性,这需要0.251 V的超电势才能达到10 mA cm(-2)的电流密度。所开发的催化电极在具有薄膜结构的催化剂中显示出最佳的OER活性。在剧烈放气条件下,该催化剂在36小时内也显示出延长的稳定性。为了演示整体式光辅助水分解装置,在Ni-Fe催化基底上制造了非晶硅太阳能电池,从而降低了光照下的OER过电势。该单片装置是OER催化基底和太阳能电池集成在一起的第一个演示,可轻松应用于工业规模的太阳能驱动的水电解中。

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