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使用非钛金属氧化物和硫化物的光催化 CO2 还原。

Photocatalytic CO(2) reduction using non-titanium metal oxides and sulfides.

机构信息

Departamento de Química, Universidad Politécnica de Valencia, C/Camino de Vera, s/n, 46022 Valencia, Spain.

出版信息

ChemSusChem. 2013 Apr;6(4):562-77. doi: 10.1002/cssc.201200670. Epub 2013 Mar 6.

Abstract

Titanium dioxide (TiO2 ) is by far the most widely used photocatalyst both for the degradation of pollutants and in the field of renewable energies for the production of solar fuels. However, TiO2 has strong limitations in CO2 reduction, particularly under visible light irradiation. The flat-band potential of electrons in the conduction band of TiO2 is lower than that required for CO2 reduction and, therefore, it seems appropriate to develop and validate materials other than TiO2 . In addition, the photoresponse of TiO2 requires photons of wavelengths in the UV range shorter than 380 nm and strategies to implement a visible-light photoresponse on TiO2 by doping have not been completely satisfactory particularly because of problems in reproducibility and stability of the materials. For these reasons, we focus in this Review on semiconductors other than TiO2 that show photocatalytic activity in CO2 reduction. Attention has been paid to the irradiation conditions to put the productivity data into context. The role of co-catalyst and heterojunctions to increase the efficiency of charge separation is also discussed. Our aim is to describe the state of the art in the field of photocatalytic CO2 reduction using materials other than TiO2 , trying to trigger further research in this area.

摘要

二氧化钛(TiO2)是迄今为止应用最广泛的光催化剂,既可以用于污染物的降解,也可以用于可再生能源领域生产太阳能燃料。然而,TiO2 在 CO2还原方面存在很大的局限性,特别是在可见光照射下。TiO2 导带中电子的平带电位低于 CO2 还原所需的电位,因此似乎有必要开发和验证除 TiO2 以外的材料。此外,TiO2 的光响应需要波长小于 380nm 的紫外光,通过掺杂实现 TiO2 可见光响应的策略并不完全令人满意,特别是由于材料的重现性和稳定性问题。出于这些原因,我们在这篇综述中重点介绍了在 CO2还原中表现出光催化活性的 TiO2 以外的半导体。我们关注的是辐照条件,以便将生产力数据置于上下文中。还讨论了助催化剂和异质结在提高电荷分离效率方面的作用。我们的目的是描述使用 TiO2 以外的材料进行光催化 CO2 还原的最新技术,试图在该领域引发进一步的研究。

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