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Tuneable Control of Organocatalytic Activity through Host-Guest Chemistry

机译:通过宿主化学调节有机催化活动的可调控制

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摘要

Dynamic regulation of chemical reactivity is important in many complex chemical reaction networks, such as cascade reactions and signal transduction processes. Signal responsive catalysts could play a crucial role in regulating these reaction pathways. Recently, supramolecular encapsulation was reported to regulate the activities of artificial catalysts. We present a host-guest chemistry strategy to modulate the activity of commercially available synthetic organocatalysts. The molecular container cucurbit[7]uril was successfully applied to change the activity of four different organocatalysts and one initiator, enabling up- or down-regulation of the reaction rates of four different classes of chemical reactions. In most cases CB[7] encapsulation results in catalyst inhibition, however in one case catalyst activation by binding to CB[7] was observed. The mechanism behind this unexpected behavior was explored by NMR binding studies and pKa measurements. The catalytic activity can be instantaneously switched during operation, by addition of either supramolecular host or competitive binding molecules, and the reaction rate can be predicted with a kinetic model. Overall, this signal responsive system proves a promising tool to control catalytic activity.
机译:在许多复杂的化学反应网络中,如级联反应和信号转导过程中,化学反应性的动态调节非常重要。信号响应型催化剂在调节这些反应途径中起着至关重要的作用。最近,有报道称,超分子封装可以调节人工催化剂的活性。我们提出了一种主客体化学策略来调节商用合成有机催化剂的活性。分子容器cucurbit[7]uril成功地用于改变四种不同有机催化剂和一种引发剂的活性,从而能够上调或下调四种不同类别化学反应的反应速率。在大多数情况下,CB[7]封装会导致催化剂抑制,但在一种情况下,观察到通过结合CB[7]来激活催化剂。通过NMR结合研究和pKa测量,探索了这种意外行为背后的机制。通过添加超分子主体或竞争性结合分子,可以在操作过程中瞬间切换催化活性,并且可以用动力学模型预测反应速率。总之,这种信号响应系统被证明是控制催化活性的一种很有前途的工具。

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