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Enhanced catalytic reaction at an air–liquid–solid triphase interface

机译:在空气 - 液体 - 固体三相界面处增强催化反应

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摘要

Gaseous reactant involved heterogeneous catalysis is critical to the development of clean energy, environmental management, health monitoring, and chemical synthesis. However, in traditional heterogeneous catalysis with liquid–solid diphase reaction interfaces, the low solubility and slow transport of gaseous reactants strongly restrict the reaction efficiency. In this minireview, we summarize recent advances in tackling these drawbacks by designing catalytic systems with an air–liquid–solid triphase joint interface. At the triphase interface, abundant gaseous reactants can directly transport from the air phase to the reaction centre to overcome the limitations of low solubility and slow transport of the dissolved gas in liquid–solid diphase reaction systems. By constructing a triphase interface, the efficiency and/or selectivity of photocatalytic reactions, enzymatic reactions, and (photo)electrochemical reactions with consumption of gaseous reactants oxygen, carbon dioxide, and nitrogen are significantly improved.
机译:气态反应物涉及异质催化对于清洁能源,环境管理,健康监测和化学合成的发展至关重要。然而,在具有液体固体二相反应界面的传统异质催化中,低溶解度和气态反应物的缓慢运输强烈限制反应效率。在这次MINIREVIEW中,我们通过设计具有空气液体固体三相关节界面的催化系统来总结解决这些缺点的最新进展。在三相界面,丰富的气态反应物可以直接从空气相输送到反应中心,以克服液体固体二相反应系统中溶解气体的低溶解度和缓慢运输的限制。通过构建三相界面,显着改善了光催化反应,酶促反应,酶促反应和(Photo)电化学反应的效率和/或选择性和(Photo)电化学反应的显着提高。

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