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Tunable Molecular-Scale Materials for Catalyzing the Low-Overpotential Electrochemical Conversion of CO_2

机译:可调谐的分子尺度材料,用于催化CO_2的低超电势电化学转化

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摘要

Electrochemical CO2 reduction provides a clean and viable alternative for mitigating the environmental aspects of global greenhouse gas emissions. To date, the simultaneous goals of CO2 reduction at high selectivity and activity have yet to be achieved. Here, the importance of engineering both sides of the electrode-electrolyte interface as a rational strategy for achieving this milestone is highlighted. An emphasis is placed on researchers contributing to the design of solid electrodes based on metal-organic frameworks (MOFs) and electrolytes based on room-temperature ionic liquids (RTILs). Future research geared toward optimizing the electrode-electrolyte interface for efficient and selective CO2 reduction can be achieved by understanding the structure of newly designed RTILs at the electrified interface, as well as structure-activity relationships in highly tunable MOF platforms.
机译:减少电化学二氧化碳的排放为缓解全球温室气体排放的环境影响提供了一种清洁可行的替代方法。迄今为止,在高选择性和高活性的同时减少二氧化碳的目标尚未实现。在此,强调了将电极-电解质界面的两侧进行工程设计作为实现此里程碑的合理策略的重要性。研究人员将重点放在为基于金属有机骨架(MOF)的固体电极和基于室温离子液体(RTIL)的电解质设计的研究上。通过了解带电界面上新设计的RTIL的结构以及高度可调的MOF平台中的结构与活性之间的关系,可以实现针对优化电极-电解质界面以进行有效和选择性的CO2减少的未来研究。

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