Mechanochemical Synthesis of Pillar[5]arene-based [c2]Daisy Chain Rotaxanes

Dr. Boram Park, Dr. Iwona Nierengarten, Dr. Jean-François Nierengarten
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引用次数: 0

Abstract

The Front Coverillustrates the solvent-free mechanochemical conditions used to functionalize daisy-chain assemblies. In their Research Article (DOI: 2500002), J.-F. Nierengarten and co-workers reveal the potential of mechanochemical conditions for the synthesis of pillar[5]arene-based mechanically interlocked nanostructures. Concentration effects are clearly beneficial when the reactions are performed under solvent-free conditions as daisy-chain assemblies are effectively present in the solid state despite the very weak tendency of the monomer to aggregate in solution. In other words, stoppered cyclic daisy-chain dimers that cannot be obtained in solution are now accessible.

柱状[5]芳烃基[c2]菊花链轮烷的机械化学合成
封面说明了无溶剂的机械化学条件,用于功能化雏菊链组件。在他们的研究文章(DOI: 2500002)中,j.f。Nierengarten及其同事揭示了合成柱状b[5]芳烃基机械互锁纳米结构的机械化学条件的潜力。当反应在无溶剂条件下进行时,浓度效应显然是有益的,因为尽管单体在溶液中聚集的倾向非常弱,但菊花链组装在固态中有效地存在。换句话说,不能在溶液中获得的环状雏菊链二聚体现在是可获得的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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