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Dynamic polyimine macrobicyclic cryptands – self-sorting with component selection

机译:动态聚亚胺大环双配体–通过组分选择自分类

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摘要

Self-assembling macrobicyclic cryptand-type organic cages display remarkable self-sorting behavior with efficient component selection. Making use of the dynamic covalent chemistry approach, eight different cages were synthesized by condensation of tris(2-aminopropyl)amine with structurally different dialdehydes. A series of self-sorting experiments were first carried out on simple dynamic covalent libraries. They reveal the influence of different structural features of the aldehyde components on the condensation with two triamine capping units. Subsequently, self-sorting experiments were performed on more complex systems involving several dialdehyde building blocks. Altogether, the results obtained describe the effect of the presence of a heteroatom, of electrostatic interactions, of delocalization and of the flexibility/stiffness of the propensity of a component to undergo formation of a macrobicyclic cage. In the presence of a catalytic amount of acid, the macrobicyclic structure undergoes dynamic component exchange.
机译:自组装的大双环穴状有机笼子具有出色的自分选行为和有效的成分选择。利用动态共价化学方法,通过三(2-氨基丙基)胺与结构不同的二醛缩合,合成了八个不同的笼。首先在简单的动态共价库上进行了一系列自分类实验。他们揭示了醛组分的不同结构特征对两个三胺封端单元缩合的影响。随后,在涉及多个二醛结构单元的更复杂的系统上进行了自分类实验。总之,所获得的结果描述了杂原子的存在,静电相互作用,离域以及组分经历大双环笼形成的倾向的柔性/刚度的影响。在催化量的酸存在下,大双环结构经历动态组分交换。

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