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Bio-inspired creation of heterogeneous reaction vessels via polymerization of supramolecular ion pair

机译:通过超分子离子对聚合的生物启发造成异质反应容器

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摘要

Precise control of the outer-sphere environment around the active sites of heterogeneous catalysts to modulate the catalytic outcomes has long been a challenge. Here, we demonstrate how this can be fulfilled by encapsulating catalytic components into supramolecular capsules, used as building blocks for materials synthesis, whereby the microenvironment of each active site is tuned by the assembled wall. Specifically, using a cationic template equipped with a polymerizable functionality, anionic ligands can be encapsulated by ion pair-directed supramolecular assembly, followed by construction into porous frameworks. The hydrophilic ionic wall enables reactions to be achieved in water that usually requires organic solvents and also facilitates the enrichment of the substrate into the hydrophobic pocket, leading to superior catalytic performances as demonstrated by the industrially relevant hydroformylation. Remarkably, the formation of the supramolecular assembly and catalyst encapsulation further engenders reaction selectivity, which reaches an even greater extent after construction of the porous framework.
机译:精确控制异质催化剂的活性位点周围的外部球形环境,以调节催化结果长期存在挑战。在此,我们证明了如何通过将催化组分包封到超分子胶囊中来满足,用作材料合成的构建块,由此每个有源部位的微环境被组装的壁调节。具体地,使用配备有可聚合性功能的阳离子模板,阴离子配体可以通过离子对定向的超分子组件包封,然后用构造成多孔框架。亲水离子壁使得能够在通常需要有机溶剂的水中实现的反应,并且还促进基材的富集到疏水袋中,导致工业上相关的加氢甲酰化的优异催化性能。值得注意的是,超分子组装和催化剂包封的形成进一步加剧了反应选择性,该反应选择性在构建多孔框架之后达到更大程度。

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