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Exploiting recognition-mediated assembly and reactivity in [2]rotaxane formation

机译:在[2]轮烷形成中利用识别介导的组装和反应性

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摘要

A small molecular reaction network exploits recognition-mediated reactive processes in order to drive the assembly and formation of both a self-replicating linear template (thread) and a [2]rotaxane, in which the linear template is encircled by a diamide macrocycle. Complementary recognition sites, placed at strategic positions on the reactive building blocks, drive these assembly and replication processes. Template-instructed experiments show that the thread is capable of efficient self-replication and that no cross-catalytic relationships exist between the thread and the [2]rotaxane. The rate of [2]rotaxane formation is insensitive to the addition of a preformed template, however, [2]rotaxane formation does show enhanced diastereoselectivity, most likely originating from its recognition-mediated formation through a ternary reactive complex.
机译:一个小分子反应网络利用识别介导的反应过程来驱动自复制线性模板(线)和[2]轮烷的组装和形成,其中线性模板被二酰胺大环环抱。互补识别位点位于反应性构建基块上的战略位置,可驱动这些组装和复制过程。模板指导的实验表明,该线能够有效自我复制,并且该线与[2]轮烷之间不存在交叉催化关系。 [2]轮烷的形成速率对预先形成的模板的添加不敏感,但是,[2]轮烷的形成确实显示出非对映选择性的增强,最有可能源自其通过三元反应复合物的识别介导的形成。

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