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One-pot synthesis of a c2daisy-chain-containing hetero4rotaxane via a self-sorting strategy

机译:通过自动分选策略一锅合成含c2菊花链的杂4轮烷

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摘要

The construction and efficient synthesis of hetero[n]rotaxanes with high structural complexity are always attractive challenges. Herein, we demonstrate a facile one-pot preparation of a hetero[4]rotaxane, by employing a self-sorting strategy, which contains an interpenetrated dibenzo-24-crown-8 (>DB24C8) based [c2]daisy chain structure and is ended with a benzo-21-crown-7 (>B21C7) based rotaxane at each side. The key to the design involved encoding the selective threading using a steric hindrance-related “language”, where highly selective self-assemblies occurred in a three-component self-sorting process, which included the threading of a benzylalkylammonium into a >B21C7 and interpenetrated dimerized formation of a >DB24C8 based [c2]daisy chain simultaneously; the precise pre-assembled system resulted in the efficient synthesis of hetero[4]rotaxane with a high-level of structural complexity under the “CuAAC” reaction.
机译:具有高结构复杂性的杂[n]轮烷的构建和有效合成始终是有吸引力的挑战。本文中,我们通过采用自分选策略演示了一种简便的一锅制备杂[4]轮烷的方法,该策略包含基于互穿的二苯并-24-冠-8(> DB24C8 )的[c2 ]菊花链结构,并在每侧以基于苯并21-冠7(> B21C7 )的轮烷为末端。设计的关键在于使用与空间位阻相关的“语言”对选择性穿线进行编码,在这种情况下,高度选择性的自组装在三组分自分类过程中发生,其中包括将苄基烷基铵穿入> B21C7 并同时穿透基于> DB24C8 的[c2]菊花链的二聚化;精确的预组装系统可以在“ CuAAC”反应下高效合成具有高水平结构复杂性的杂[4]轮烷。

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