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关于用于二氧化碳光还原的石墨相氮化碳的综合综述。

A Comprehensive Review on Graphitic Carbon Nitride for Carbon Dioxide Photoreduction.

作者信息

Khan Javid, Sun Yanyan, Han Lei

机构信息

College of Materials Science and Engineering, Hunan Joint International Laboratory of Adv. Mater. and Technology for Clean Energy, Hunan University, Changsha, 410082, China.

School of Materials Science and Engineering, Central South University, Changsha, Hunan, 410083, China.

出版信息

Small Methods. 2022 Dec;6(12):e2201013. doi: 10.1002/smtd.202201013. Epub 2022 Nov 6.

Abstract

Inspired by natural photosynthesis, harnessing the wide range of natural solar energy and utilizing appropriate semiconductor-based catalysts to convert carbon dioxide into beneficial energy species, for example, CO, CH , HCOOH, and CH COH have been shown to be a sustainable and more environmentally friendly approach. Graphitic carbon nitride (g-C N ) has been regarded as a highly effective photocatalyst for the CO reduction reaction, owing to its cost-effectiveness, high thermal and chemical stability, visible light absorption capability, and low toxicity. However, weaker electrical conductivity, fast recombination rate, smaller visible light absorption window, and reduced surface area make this catalytic material unsuitable for commercial photocatalytic applications. Therefore, certain procedures, including elemental doping, structural modulation, functional group adjustment of g-C N , the addition of metal complex motif, and others, may be used to improve its photocatalytic activity towards effective CO reduction. This review has investigated the scientific community's perspectives on synthetic pathways and material optimization approaches used to increase the selectivity and efficiency of the g-C N -based hybrid structures, as well as their benefits and drawbacks on photocatalytic CO reduction. Finally, the review concludes a comparative discussion and presents a promising picture of the future scope of the improvements.

摘要

受自然光合作用的启发,利用广泛的天然太阳能并使用合适的基于半导体的催化剂将二氧化碳转化为有益的能量物质,例如CO、CH 、HCOOH和CH COH,已被证明是一种可持续且更环保的方法。石墨相氮化碳(g-C N )因其成本效益高、热稳定性和化学稳定性高、可见光吸收能力强以及毒性低,而被视为用于CO还原反应的高效光催化剂。然而,导电性较弱、复合速率快、可见光吸收窗口较小以及表面积减小,使得这种催化材料不适用于商业光催化应用。因此,可以采用某些方法,包括对g-C N 进行元素掺杂、结构调制、官能团调整、添加金属络合物 motif等,以提高其对有效CO还原的光催化活性。本综述研究了科学界对用于提高基于g-C N 的杂化结构的选择性和效率的合成途径和材料优化方法的观点,以及它们在光催化CO还原方面的优缺点。最后,综述进行了比较讨论,并展示了未来改进范围的光明前景。

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