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A review and evaluation of photoelectrode coating materials and methods for photoelectrochemical hydrogen production

机译:光电极涂料及光电化学制氢方法的评述

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In this study, CdS, TiO2, CdSe, WO3, Fe2O3, and CuO/Cu2O based photoelectrode coating materials are considered for investigation under some significant selected coating methods, namely, chemical vapor deposition (CVD), electrochemical deposition (ECD), electrodeposition (ED), sol-gel (SG), spin coating (SC), and spray pyrolysis (SP). Their performance evaluations are carried out comparatively for photoelectrochemical hydrogen production. The photocurrent generation and voltage/light requirements of these photo electrodes are also compared to evaluate the impact of material and method selection on photoelectrochemical hydrogen generation. The results show that among selected photoelectrode coating materials, CdS based photoelectrodes generate the highest photocurrent (3715.58 mu A/cm(2)), followed by CdSe (2963.43 mu A/cm(2)), CuO/Cu2O (1873.33 mu A/cm(2)), TiO2 (1500.60 mu A/cm(2)), WO3 (1435.28 mu A/cm(2)), and Fe2O3 (443.3 mu A/cm(2)). Average photocurrent densities of selected coating methods show that photocathodes processed by spin coating produce the highest photocurrent (2343.57 mu A/cm(2)), followed by electrochemical deposition (1623.36 mu A/cm(2)), electrodeposition (1359.77 mu A/cm(2)), spray pyrolysis (1217.50 mu A/cm(2)), chemical vapor deposition (619.44 mu A/cm(2)), and sol gel (335.06 mu A/cm(2)). (C) 2015 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,考虑使用CdS,TiO2,CdSe,WO3,Fe2O3和CuO / Cu2O基光电极涂层材料在一些重要的选定涂层方法下进行研究,这些涂层方法包括化学气相沉积(CVD),电化学沉积(ECD),电沉积( ED),溶胶-凝胶(SG),旋涂(SC)和喷雾热解(SP)。他们的性能评估是针对光电化学制氢进行的。还比较了这些光电极的光电流产生和电压/光需求,以评估材料和方法选择对光电化学氢产生的影响。结果表明,在所选的光电极涂层材料中,基于CdS的光电极产生的光电流最高(3715.58μA/ cm(2)),其次是CdSe(2963.43μA/ cm(2)),CuO / Cu2O(1873.33μA/ cm(2)),TiO2(1500.60μA/ cm(2)),WO3(1435.28μA/ cm(2))和Fe2O3(443.3μA/ cm(2))。所选涂布方法的平均光电流密度显示,通过旋涂处理的光阴极产生最高的光电流(2343.57μA / cm(2)),然后进行电化学沉积(1623.36μA / cm(2)),然后进行电沉积(1359.77μA / cm(2)),喷雾热解(1217.50μA/ cm(2)),化学气相沉积(619.44μA/ cm(2))和溶胶凝胶(335.06μA/ cm(2))。 (C)2015 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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