金属有机骨架
纳米技术
材料科学
还原(数学)
金属
冶金
化学
物理化学
几何学
数学
吸附
作者
Hanguang Zhang,Jiazhan Li,Qiang Tan,Leilei Lü,Zhen‐Bo Wang,Gang Wu
标识
DOI:10.1002/chem.201803083
摘要
Abstract Excessive CO 2 emission due to a large amount of fossil fuel utilization has become a widespread concern, which causes both environmental and energy problems. To solve these issues, electrocatalytic and photocatalytic reduction of CO 2 to produce value‐added chemicals have gained immense attention. Recently, metal–organic frameworks (MOFs) and their derived materials with high specific surface areas, controllable pore structures, and tunable chemical properties exhibit promising performance among the reported catalytic materials for CO 2 conversion. This review describes the recent advances on the rational design and synthesis of MOF‐based electrocatalysts and photocatalysts for CO 2 reduction. The importance of the catalytic processes is highlighted, followed by systematic understanding of MOF‐based catalysts for CO 2 reduction through electrochemical and photochemical approaches. Special emphasis of this review is to introduce basic catalyst design strategies and synthesis methods as well as their resulting electrocatalysts and photocatalysts. One of the major goals is to elucidate the structures and properties that link to their catalytic activity, selectivity, and stability towards to CO 2 reduction. We also outline the challenges in this research area and propose the potential strategies for the rational design and synthesis of high‐performance catalysts.
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