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Photocatalytic Reduction of CO2 on TiO2 and Other Semiconductors

机译:TiO2和其他半导体上的CO2光催化还原

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Rising atmospheric levels of carbon dioxide and the depletion of fossil fuel reserves raise serious concerns about the ensuing effects on the global climate and future energy supply. Utilizing the abundant solar energy to convert CO2 into fuels such as methane or methanol could address both problems simultaneously as well as provide a convenient means of energy storage. In this Review, current approaches for the heterogeneous photocatalytic reduction of CO2 on TiO2 and other metal oxide, oxynitride, sulfide, and phosphide semiconductors are presented. Research in this field is focused primarily on the development of novel nanostructured photocatalytic materials and on the investigation of the mechanism of the process, from light absorption through charge separation and transport to CO2 reduction pathways. The measures used to quantify the efficiency of the process are also discussed in detail.
机译:大气中二氧化碳水平的上升和化石燃料储备的枯竭引起了人们对随之而来的对全球气候和未来能源供应的影响的严重关切。利用丰富的太阳能将CO2转化为甲烷或甲醇等燃料可以同时解决这两个问题,并提供一种方便的能量存储方式。在这篇综述中,介绍了用于在TiO2和其他金属氧化物,氮氧化物,硫化物和磷化物半导体上进行多相光催化还原CO2的当前方法。该领域的研究主要集中在新型纳米结构光催化材料的开发上,并研究该过程的机理,从光吸收到电荷分离以及向CO2还原途径的迁移。还详细讨论了用于量化过程效率的措施。

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