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Complexation of imidazopyridine-based cations with a 24-crown-8 ether host: [2]pseudorotaxane and partially threaded structures

机译:咪唑并吡啶基阳离子与24冠8醚主体的络合:[2]假轮烷和部分螺纹结构

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摘要

A new series of linear molecules derived from 1,2-bis(imidazopyridin-2-yl) ethane can fully or partially penetrate the cavity of the dibenzo-24-crown-8 macrocycle to produce a new family of host-guest complexes. Protonation or alkylation of the nitrogen atoms on the pyridine rings led to an increase in the guest total positive charge up to 4+ and simultaneously generated two new recognition sites (pyridinium motifs) that are in competition with the 1,2-bis(benzimidazole)ethane motif for the crown ether. The relative position of the pyridine ring and the chemical nature of the N-substituent determined the preferred motif and the host-guest complex geometry: (i) for linear guests with relatively bulky groups (i.e., a benzyl substituent), the 1,2-bis(benzimidazole) ethane motif is favored, leading to a fully threaded complex with a [2]pseudorotaxane geometry; (ii) for small substituents, such as -H and -CH _3 groups, regardless of the guest shape, the pyridinium motifs are preferred, leading to external partially threaded complexes in a 2:1 host to guest stoichiometry.
机译:衍生自1,2-双(咪唑并吡啶-2-基)乙烷的一系列新线性分子可以完全或部分穿透dibenzo-24-crown-8大环的腔,从而产生新的宿主-客体复合物家族。吡啶环上氮原子的质子化或烷基化导致宾客总正电荷增加至4+,并同时生成了两个与1,2-双(苯并咪唑)竞争的新识别位点(吡啶基)冠醚的乙烷基序。吡啶环的相对位置和N-取代基的化学性质决定了优选的基序和主体-客体的复杂几何形状:(i)对于具有相对庞大基团(即苄基取代基)的线性客体,1,2 -双(苯并咪唑)乙烷基序是有利的,从而导致具有[2]假轮烷结构的全螺纹络合物; (ii)对于小的取代基,例如-H和-CH _3基团,不管客体形状如何,优选吡啶鎓基序,导致客体化学计量比为2∶1的外部部分带螺纹的配合物。

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