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Cofactor Controlled Encapsulation of a Rhodium Hydroformylation Catalyst

机译:Cofactor受控包封铑加氢甲酰化催化剂

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摘要

Supramolecular approaches in transition-metal catalysis, including catalyst encapsulation, have attracted considerable attention. Compared to enzymes, supramolecular catalysts in general are less complex. Enzyme activity is often controlled by the use of smaller cofactor molecules, which is important in order to control reactivity in complex mixtures of molecules. Interested in increasing complexity and allowing control over supramolecular catalyst formation in response to external stimuli, we designed a catalytic system that only forms an efficient supramolecular complex when a small cofactor molecule is added to the solution. This in turn affects both the activity and selectivity when applied in a hydroformylation reaction. This contribution shows that catalyst encapsulation can be controlled by the addition of a cofactor, which affects crucial catalyst properties.
机译:过渡金属催化的超分子方法,包括催化剂包封,引起了相当大的关注。 与酶相比,超分子催化剂通常不太复杂。 酶活性通常通过使用较小的辅因子分子来控制,这对于控制分子复合混合物中的反应性是重要的。 感兴趣的是响应于外部刺激的复杂性和允许对超分子催化剂形成进行控制,我们设计了一种催化系统,当将小辅因子分子加入溶液中时,催化系统仅形成高效的超分子复合物。 当施加加氢甲酰化反应时,这反过来又会影响活性和选择性。 该贡献表明,可以通过添加辅因子来控制催化剂包封,其影响关键催化剂性质。

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