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A critical review in strategies to improve photocatalytic water splitting towards hydrogen production

机译:对改善光催化水分解成氢气的策略的严格审查

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Water splitting for hydrogen production under light irradiation is an ideal system to provide renewable energy sources and to reduce global warming effects. Even though significant efforts have been devoted to fabricate advanced nanocomposite materials, the main challenge persists, which is lower efficiency and selectivity towards H-2 evolution under solar energy. In this review, recent developments in photo-catalysts, fabrication of novel heterojunction constructions and factors influencing the photocatalytic process for dynamic H-2 production have been discussed. In the mainstream, recent developments in TiO2 and g-C3N4 based photo-catalysts and their potential for H-2 production are extensively studied. The improvements have been classified as strategies to improve different factors of photocatalytic water splitting such as Z-scheme systems and influence of operating parameters such as band gap, morphology, temperature, light intensity, oxygen vacancies, pH, and sacrificial reagents. Moreover, thermodynamics for selective photocatalytic H-2 production are critically discussed. The advances in photo-reactors and their role to provide more light distribution and surface area contact between catalyst and light were systematically described. By applying the optimum operating parameters and new engineering approach on photoreactor, the efficiency of semiconductor photocatalysts for H-2 production can be enhanced. The future research and perspectives for photocatalytic water splitting were also suggested. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:光照射下用于制氢的水分解是提供可再生能源并减少全球变暖影响的理想系统。即使已投入大量努力来制造先进的纳米复合材料,但主要挑战仍然存在,即在太阳能下降低效率和对H-2析出的选择性。在这篇综述中,讨论了光催化剂的最新进展,新型异质结结构的制造以及影响动态H-2生产的光催化过程的因素。在主流中,广泛研究了基于TiO2和g-C3N4的光催化剂的最新发展及其在H-2生产中的潜力。这些改进被归类为改善光催化水分解的不同因素(例如Z方案系统)和操作参数(例如带隙,形态,温度,光强度,氧空位,pH和牺牲试剂)影响的策略。此外,对选择性光催化H-2生产的热力学进行了严格讨论。系统地描述了光反应器的进展及其在催化剂和光之间提供更多光分布和表面积接触的作用。通过在光反应器上应用最佳操作参数和新的工程方法,可以提高用于H-2生产的半导体光催化剂的效率。还提出了光催化水分解的未来研究和前景。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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