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Halogen bonded Borromean networks by design: topology invariance and metric tuning in a library of multi-component systems

机译:通过设计设计的卤素键合Borromean网络:多组件系统库中的拓扑不变性和度量调整

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摘要

A library of supramolecular anionic networks showing Borromean interpenetration has been prepared by self-assembly of crypt-222, several metal or ammonium halides, and five bis-homologous α,ω-diiodoperfluoroalkanes. Halogen bonding has driven the formation of these anionic networks. Borromean entanglement has been obtained starting from all the four used cations, all the three used anions, but only two of the five used diiodoperfluoroalkanes. As the change of the diiodoperfluoroalkane, the cation, or the anion has a different relative effect on the metrics and bondings of the self-assembled systems, it can be generalized that bonding, namely energetic, features play here a less influential role than metric features in determining the topology of the prepared tetra-component cocrystals. This conclusion may hold true for other multi-component systems and may function as a general heuristic principle when pursuing the preparation of multi-component systems having the same topology but different composition.
机译:通过隐窝222,几种金属或铵的卤化物和五种双同源的α,ω-二碘全氟烷烃的自组装,制备了显示Borromean互穿的超分子阴离子网络库。卤素键驱动了这些阴离子网络的形成。从所有四个使用过的阳离子,所有三个使用过的阴离子开始,都获得了硼烯的缠结,但是在五个使用的二碘全氟烷烃中只有两个。由于二碘全氟烷烃,阳离子或阴离子的变化对自组装系统的度量和键合具有不同的相对影响,因此可以概括地说,键合(即高能)特征在此起的作用不如公制特征在确定所制备的四组分共晶体的拓扑时。该结论可能适用于其他多组件系统,并且在追求制备具有相同拓扑结构但组成不同的多组件系统时可以用作一般启发式原理。

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