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Semiconductor nanocrystal photocatalysis for the production of solar fuels

机译:半导体纳米晶体光电偶分析太阳能燃料

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摘要

Colloidal semiconducting nanocrystals (NCs) are powerful elements of a photocatalytic system useful for enabling a variety of chemical transformations owing to their strong light-absorbing properties and high degree of size-, shape-, and composition-tunability. Key to their utility is our understanding of the photoinduced charge transfer processes required for these photochemical transformations. This Perspective will focus on the implementation of semiconductor NCs for photochemical fuel formation. Three general system designs for photocatalytic proton reduction using semiconductor NCs will be reviewed: metal-semiconductor heterostructures, NC photosensitizers with molecular catalysts, and hydrogenase-based systems. Other relevant reactions toward solar fuel targets, such as CO2 and N-2 reductions with NCs, will also be highlighted. Illustrating the versatile roles that NCs can play in light-driven chemical reactions, advances made toward NC-catalyzed organic transformations will be discussed. Finally, we will share a few concluding thoughts and perspectives on the future of the field, with a focus on goals toward improving and implementing NC-based technologies for solar fuel development.
机译:胶体半导体纳米晶体(NCs)是光催化系统中的强大元件,由于其强大的光吸收性能和高度的尺寸、形状和成分可调性,可用于实现各种化学转化。其用途的关键是我们对这些光化学转化所需的光诱导电荷转移过程的理解。这一观点将集中于半导体NCs在光化学燃料形成中的应用。综述了三种利用半导体NCs进行光催化质子还原的通用系统设计:金属-半导体异质结构、带有分子催化剂的NC光敏剂和基于氢化酶的系统。其他针对太阳能燃料目标的相关反应,如使用NCs减少CO2和N-2,也将被强调。为了说明NCs在光驱动化学反应中可以发挥的多种作用,将讨论NC催化的有机转化方面取得的进展。最后,我们将分享一些关于该领域未来的总结性想法和观点,重点是改进和实施基于NC的太阳能燃料开发技术的目标。

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