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首页> 外文期刊>Angewandte Chemie >Pathway Complexity Versus Hierarchical Self-Assembly in N-Annulated Perylenes: Structural Effects in Seeded Supramolecular Polymerization
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Pathway Complexity Versus Hierarchical Self-Assembly in N-Annulated Perylenes: Structural Effects in Seeded Supramolecular Polymerization

机译:途径复杂性与N-环状的丙基中的等级自组装:种子超分子聚合中的结构效应

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摘要

Studies were carried out on the hierarchical self-assembly versus pathway complexity of N-annulated perylenes 1-3, which differ only in the nature of the linking groups connecting the perylene core and the side alkoxy chains. Despite the structural similarity, compounds 1 and 2 exhibit noticeable differences in their self-assembly. Whereas 1 forms an off-pathway aggregate I that converts over time (or by addition of seeds) into the thermodynamic, on-pathway product, 2 undergoes a hierarchical process in which the kinetically trapped monomer species does not lead to a kinetically controlled supramolecular growth. Finally, compound 3, which lacks the amide groups, is unable to self-assemble under identical experimental conditions and highlights the key relevance of the amide groups and their position to govern the self-assembly pathways.
机译:对N-环状的基质1-3的分层自组装与途径复杂性进行研究,其仅在连接前核和侧烷氧基链的连接基团的性质中不同。 尽管结构相似,但化合物1和2在自组装中表现出明显的差异。 然而,1形成途径的途径群体I,其将随时间(或通过加入种子)转化为热力学,途径产品,2经历一种分层过程,其中动力学捕获的单体物种不会导致动力学上的超分子生长 。 最后,缺乏酰胺基团的化合物3不能在相同的实验条件下自组装,并突出酰胺基团的关键相关性及其立场来管理自组装途径。

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