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Photocatalytic conversion of CO2 over graphene-based composites: current status and future perspective

机译:石墨烯基复合材料上CO2的光催化转化:现状和未来展望

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The continuous rise in the atmospheric CO2 level and the ever-increasing demand of energy have raised serious concerns about the ensuing effects on the global climate change and future energy supply. Photocatalytic conversion of CO2, which uses solar light energy to recycle CO2 into fuels and chemicals, provides a promising and straightforward strategy to simultaneouslyreduce the atmospheric CO2 level and fulfil the future energy demand. However, the lack of substantial development of state-of-the-art materials remains a major bottleneck of this technology. In recent years, graphene-based composite photocatalysts have gained increasing interest in CO2 conversion due to the introduction of graphene with a series of unique physicochemical properties, which has shown to play a significant role in promoting the photocatalytic solar energy conversion efficiency. In this review, we comprehensively summarize the typical literature reports on graphene-based composites for photocatalytic conversion of CO2 to produce solar fuels and chemicals. The main types of the reported graphene-based composites and the role of graphene in the composites in improving the photocatalytic performance have been elaborated. In particular, we have highlighted the possible role of graphene in tuning the product selectivity of photocatalytic reduction of CO2. Finally, perspectives on the existing problems and future research on graphene-based composites toward photocatalytic conversion of CO2 are critically discussed.
机译:大气中二氧化碳水平的持续上升和对能源的不断增长,引起了人们对全球气候变化和未来能源供应的后续影响的严重关切。利用太阳光能将CO2循环利用为燃料和化学物质的光催化转化CO2提供了一种有前途和直接的策略,可以同时降低大气中的CO2含量并满足未来的能源需求。但是,缺乏对最新材料的实质性开发仍然是该技术的主要瓶颈。近年来,由于引入具有一系列独特的理化性质的石墨烯,石墨烯基复合光催化剂对CO2转化的兴趣日益增加,这已显示出在促进光催化太阳能转化效率方面的重要作用。在这篇综述中,我们全面总结了关于石墨烯基复合材料的典型文献报道,该复合材料用于光催化转化CO2以生产太阳能和化学产品。详细阐述了已报道的石墨烯基复合材料的主要类型以及石墨烯在复合材料中改善光催化性能的作用。特别是,我们强调了石墨烯在调节光催化还原CO2的产物选择性方面的可能作用。最后,对石墨烯基复合材料在光催化转化CO 2方面存在的问题和今后的研究进行了展望。

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