论文标题

定义明确的Cu $ _2 $ o太阳能燃料和化学品的光催化剂

Well-defined Cu$_2$O photocatalysts for solar fuels and chemicals

论文作者

Rej, Sourav, Bisetto, Matteo, Naldoni, Alberto, Fornasiero, Paolo

论文摘要

氧化热的形状控制的合成(Cu $ _2 $ o)具有低指数或高指数晶体平面的光催化剂,由于其独特的相位依赖性属性,引起了人们的关注。由于它们廉价且地球丰富,因此这些定义明确的Cu $ _2 $ o纳米结构被广泛用于不同的光催化反应,这也是由于它们具有强大的可见光吸收能力。但是,仍需要进一步的开发来提高Cu $ _2 $ O的效率和光稳定性,这仍然限制了其工业应用。我们通过总结Cu $ _2 $ O和其他相关的混合Cu $ _2 $ O _2 $ o的异质结构的综合进步开始这篇评论,并特别重视其增长机制。然后,我们讨论与光催化有关的不同方面依赖性特性。在随后的一节中,我们对有机合成,氢生产和二氧化碳光载体期间的cu $ _2 $ o纳米结构的光催化性能进行了重要讨论。还讨论了光催化效率与产品选择性与暴露的晶体面之间的关系或杂交纳米结构的不同组成之间的关系。最后,提出了重要的策略来克服光稳定性问题,同时概述了未来发展的过程,以进一步提高定义明确的Cu $ _2 $ o基于基于的光催化剂的技术准备。

The shape-controlled synthesis of cuprous oxide (Cu$_2$O) photocatalysts with both low or high index crystal planes has received increasing attention due to their unique facet-dependent properties. Since they are cheap and earth abundant, these well-defined Cu$_2$O nanostructures are extensively used for different photocatalytic reactions, also because of their strong visible light absorption capability. However, further development will be still needed to enhance the efficiency and photostability of Cu$_2$O, which still limits its industrial application. We start this review by summarizing the synthetic advancement in the facet engineering of Cu$_2$O and other associated hybrid Cu$_2$O-based heterostructures with a special emphasis put on their growth mechanism. We then discuss different facet-dependent properties, which are relevant to photocatalysis. In the subsequent section, we present a critical discussion on the photocatalytic performance of faceted Cu$_2$O nanostructures during organic synthesis, hydrogen production, and carbon dioxide photoreduction. The relation between photocatalytic efficiency and product selectivity with exposed crystal facets or with different composition of hybrid nanostructures is also discussed. Finally, important strategies are proposed to overcome the photostability issue, while outlining the course of future development to further boost the technological readiness of well-defined Cu$_2$O-based photocatalysts.

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