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N-heterocyclic carbene-functionalized metal-organic frameworks for the chemical fixation of CO2

机译:N-杂环卡宾官能化金属有机框架,用于CO2的化学固定

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摘要

N-heterocyclic carbenes (NHCs) are a class of molecules with a lone pair of carbene electrons and thus, they have the ability to activate CO2 to form imidazolium carboxylates. The incorporation of activated, metal-free NHC moieties into metal-organic frameworks (MOFs) without the decomposition of metal-carboxylate coordination motifs is highly desired owing to the high CO2 affinity and versatile chemical functionalities in MOFs. Herein, we have summarized the recent in situ generation approaches to form metal-free NHC-functionalized MOFs, which are a unique class of CO2-conversion catalysts with high catalytic activity, selectivity and stability, superior to those of homogenous and other heterogeneous NHC analogues. The NHC-functionalized MOFs for catalytic CO2 reduction include reactions such as the hydroboration of CO2, hydrosilylation of CO2, N-methylation using CO2 and hydrogenation of CO2 to formic acid. Overall, the synthetic strategy of metal-free NHC-functionalized MOFs, the unique catalytic pathways of NHC-functionalized MOFs, and potentially new research directions of NHC-functionalized MOFs are discussed, which will guide researchers to attempt to design new NHC-MOFs and extend their catalytic applications in the chemical fixation of CO2.
机译:N-杂环碳碳(NHC)是一类具有孤立的卡宾电子的分子,因此,它们具有活化CO 2的能力以形成咪唑鎓羧酸盐。由于MOFS中的高CO 2亲和力和多功能化学官能团,强烈需要将活化的无金属NHC部分掺入金属 - 有机骨架(MOF)而不进行金属 - 羧酸盐配位基序。在此,我们已经总结了最近的原位生成方法,以形成无金属NHC官能化的MOF,其是具有高催化活性,选择性和稳定性的独特的CO 2转化催化剂,优于均匀和其他异质NHC类似物。用于催化CO2还原的NHC官能化MOF包括反应,例如CO 2的氢化物,CO 2的氢化硅烷化,使用CO 2的N-甲基化和CO 2的氢化至甲酸。总体而言,NHC功能化的MOFs材料,并NHC功能化的MOFs材料潜在的新研究方向的独特的催化途径进行了讨论,无金属NHC功能化的MOFs材料的合成策略,这将引导研究人员尝试设计新的NHC-MOFs材料和在CO 2的化学固定中延长其催化应用。

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