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Optimization of semiconductor ns-TiO2-CuO admixed photoelectrode for photoelectrochemical solar cell in regard to hydrogen production

机译:在制氢方面优化用于光电化学太阳能电池的半导体ns-TiO2-CuO混合光电极

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This paper deals with the investigation on the optimization of ns TiO2-CuO admixed/Ti with respect to optimum photoelectrode area for semiconductor septum photo electrochemical solar cell. The motivation of the present work was to prepare an electrode having high effective surface area and hence better quantum yield and improved PEC activity. The photoelectrochemical response of ns TiO2-CuO photo electrodes for four different electrode area has been measured to explore the effect of electrode area on the output power in a chemical fuel (i.e. H-2) produced by SC SEP PEC cell. This was done for determining the electrode area for optimum electrical output and hydrogen production. The photo electrochemical cell having ns TiO2-CuO admixed/Ti photoanode of several geometric areas like 0.5, 1.0, 1.5, 2.0 and 2.5 cm(2) were fabricated and characterized. It has been found that the photoanode area corresponding to optimum electrical output and hydrogen production rate corresponds to 1.5 cm(2). (C) 2015 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文针对半导体隔膜光电化学电池的最佳光电极面积,针对ns TiO2-CuO / Ti混合优化进行了研究。本工作的动机是制备具有高有效表面积并因此具有更好的量子产率和改善的PEC活性的电极。已测量ns TiO2-CuO光电电极对四个不同电极面积的光电化学响应,以探索电极面积对SC SEP PEC电池生产的化学燃料(即H-2)输出功率的影响。这样做是为了确定最佳电输出和产氢的电极面积。制作并表征了具有ns0.52-1.0cm,1.5-2.0cm和2.5cm(2)等几个几何区域的ns TiO2-CuO / Ti光电阳极的光电化学电池。已经发现,对应于最佳电输出和氢气产生速率的光阳极面积对应于1.5cm(2)。 (C)2015 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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