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首页> 外文期刊>Nanoscale >Recent advances in engineering active sites for photocatalytic CO(2)reduction
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Recent advances in engineering active sites for photocatalytic CO(2)reduction

机译:工程活动网站的最新进展光催化CO(2)减少

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摘要

The photocatalytic conversion of green-house gas CO(2)into high value-added carbonaceous fuels and chemicals through harvesting solar energy is a great promising strategy for simultaneously tackling global environmental issues and the energy crisis. Considering the vital role of active sites in determining the activity and selectivity in photocatalytic CO(2)reduction reactions, great efforts have been directed toward engineering active sites for fabricating efficient photocatalysts. This review highlights recent advances in the strategies for engineering active sites on surfaces and in open frameworks toward photocatalytic CO(2)reduction, referring to surface vacancies, doped heteroatoms, functional groups, loaded metal nanoparticles, crystal facets, heterogeneous/homogeneous single-site catalysts and metal nodes/organic linkers in metal organic frameworks.
机译:温室气体的光催化转换有限公司(2)到高附加值的碳质燃料和通过收集太阳能是一种化学物质伟大的同时有前途的战略解决全球环境问题和能源危机。在确定活动和活跃的网站在光催化CO选择性减少(2)反应,努力引导对工程活动网站的制作高效的催化剂。战略工程的最新进展活动地点在表面和开放的框架向光催化CO(2)减少,表面空缺,掺杂杂原子,官能团,加载金属纳米粒子,水晶面,异构/均匀单节点和金属/有机催化剂连接器的金属有机框架。

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