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首页> 外文期刊>Angewandte Chemie >In Situ Formation of Frustrated Lewis Pairs in a Water-Tolerant Metal-Organic Framework for the Transformation of CO2
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In Situ Formation of Frustrated Lewis Pairs in a Water-Tolerant Metal-Organic Framework for the Transformation of CO2

机译:原位形成耐受金属有机框架中的沮丧的路易斯对,用于转化二氧化碳

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摘要

Frustrated Lewis pairs (FLPs) consist of sterically hindered Lewis acids and Lewis bases, which provide high catalytic activity towards non-metal-mediated activation of "inert" small molecules, including CO2 among others. One critical issue of homogeneous FLPs, however, is their instability upon recycling, leading to catalytic deactivation. Herein, we provide a solution to this issue by incorporating a bulky Lewis acid-functionalized ligand into a water-tolerant metal-organic framework (MOF), named SION-105, and employing Lewis basic diamine substrates for the in situ formation of FLPs within the MOE Using CO2 as a C1-feedstock, this combination allows for the efficient transformation of a variety of diamine substrates into benzimidazoles. SION-105 can be easily recycled by washing with MeOH and reused multiple times without losing its identity and catalytic activity, highlighting the advantage of the MOF approach in FLP chemistry.
机译:令人沮丧的lewis对(flps)由空次阻碍的路易斯酸和lewis碱组成,其为非金属介导的“惰性”小分子的非金属介导的活化的高催化活性提供了高催化活性,包括CO 2等。 然而,均匀FLP的一个统一问题是它们在回收过程中的不稳定性,导致催化失效。 在此,我们通过将庞大的路易斯酸官能化配体掺入耐水金属 - 有机骨架(MOF),命名的SION-105,并利用Lewis碱性二胺基材,以便在原位形成浮雕内 使用CO 2作为C1原料的MOE,这种组合允许将各种二胺基质的有效转化为苯并咪唑。 Sion-105可以通过用MeOH洗涤而容易再循环,并在不损失其身份和催化活性的情况下重复使用,突出了FLP化学中MOF方法的优势。

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