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迈向以水为电子供体的太阳能驱动光催化二氧化碳还原

Toward Solar-Driven Photocatalytic CO2 Reduction Using Water as an Electron Donor.

作者信息

Sato Shunsuke, Arai Takeo, Morikawa Takeshi

机构信息

†Toyota Central Research and Development Laboratories, Inc., Nagakute, Aichi 480-1192, Japan.

‡PRESTO, Japan Science and Technology Agency, 4-1-8 Honcho, Kawaguchi-shi, Saitama 332-0012, Japan.

出版信息

Inorg Chem. 2015 Jun 1;54(11):5105-13. doi: 10.1021/ic502766g. Epub 2015 Feb 13.

Abstract

Developing a system for the production of organic chemicals via CO2 reduction is an important area of research that has the potential to address global warming and fossil fuel consumption. In addition, CO2 reduction promotes carbon source recycling. Solar energy is the largest exploitable resource among renewable energy resources, providing more energy to Earth per hour than the total energy consumed by humans in 1 year. This report describes the advantages and disadvantages of the available CO2 reduction and H2O oxidation photocatalysts and the conjugation of photocatalytic CO2 reduction with H2O oxidation for the creation of an artificial photosynthesis system. In this system, CO2 photoreduction and H2O photooxidation proceeded simultaneously within one system under sunlight irradiation using a hybrid of semiconductors and molecular metal-complex catalysts.

摘要

开发一种通过二氧化碳还原生产有机化学品的系统是一个重要的研究领域,该领域有潜力解决全球变暖和化石燃料消耗问题。此外,二氧化碳还原促进了碳源循环利用。太阳能是可再生能源中最大的可开发资源,每小时提供给地球的能量比人类一年消耗的总能量还多。本报告描述了现有的二氧化碳还原和水氧化光催化剂的优缺点,以及光催化二氧化碳还原与水氧化相结合以创建人工光合作用系统的情况。在该系统中,在阳光照射下,使用半导体和分子金属络合物催化剂的混合物,二氧化碳光还原和水光氧化在一个系统内同时进行。

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