Han Weiwei, Li Zhen, Li Yang, Fan Xiaobin, Zhang Fengbao, Zhang Guoliang, Peng Wenchao
School of Chemical Engineering and Technology, Tianjin University, Tianjin, China.
Front Chem. 2017 Oct 31;5:84. doi: 10.3389/fchem.2017.00084. eCollection 2017.
Semiconductor based photocatalytic process is of great potential for solving the fossil fuels depletion and environmental pollution. Loading cocatalysts for the modification of semiconductors could increase the separation efficiency of the photogenerated hole-electron pairs, enhance the light absorption ability of semiconductors, and thus obtain new composite photocatalysts with high activities. Kinds of carbon allotropes, such as activated carbon, carbon nanotubes, graphene, and carbon quantum dots have been used as effective cocatalysts to enhance the photocatalytic activities of semiconductors, making them widely used for photocatalytic energy generation, and pollutants degradation. This review focuses on the loading of different carbon allotropes as cocatalysts in photocatalysis, and summarizes the recent progress of carbon materials based photocatalysts, including their synthesis methods, the typical applications, and the activity enhancement mechanism. Moreover, the cocatalytic effect among these carbon cocatalysts is also compared for different applications. We believe that our work can provide enriched information to harvest the excellent special properties of carbon materials as a platform to develop more efficient photocatalysts for solar energy utilization.
基于半导体的光催化过程在解决化石燃料枯竭和环境污染方面具有巨大潜力。负载助催化剂对半导体进行改性可以提高光生空穴-电子对的分离效率,增强半导体的光吸收能力,从而获得具有高活性的新型复合光催化剂。各种碳的同素异形体,如活性炭、碳纳米管、石墨烯和碳量子点,已被用作有效的助催化剂来提高半导体的光催化活性,使其广泛应用于光催化能量产生和污染物降解。本文综述了不同碳同素异形体作为光催化助催化剂的负载情况,总结了碳材料基光催化剂的研究进展,包括其合成方法、典型应用和活性增强机制。此外,还比较了这些碳助催化剂在不同应用中的协同催化效果。我们相信,我们的工作可以提供丰富的信息,以利用碳材料的优异特殊性能,开发更高效的光催化剂用于太阳能利用。