首页> 外文期刊>Chemistry: A European journal >Light Control of Stoichiometry and Motion in Pseudorotaxanes Comprising a Cucurbit7uril Wheel and an Azobenzene-Bipyridinium Axle
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Light Control of Stoichiometry and Motion in Pseudorotaxanes Comprising a Cucurbit7uril Wheel and an Azobenzene-Bipyridinium Axle

机译:由葫芦7脲轮和偶氮苯-联吡啶轴组成的假轮烷的化学计量和运动的光控制

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摘要

Pseudorotaxanes are the simplest prototypes for the construction of molecular machines based on threaded species. Investigation on molecular motions in these model systems is a necessary action for an efficient design of working molecular machines and motors. Herein we report on photoactive pseudorotaxanes based on the interaction between bipyridinium and cucurbit7uril (CB7). The molecular axle is composed of a central bipyridinium unit and two azobenzene moieties at the extremities. CB7 can form two different complexes with this molecule: a 2pseudorotaxane, in which the macrocycle shuttles fast along the length of the axle, and a 3pseudorotaxane, in which two CB7s are confined at the extremities of the axle. Upon trans to cis isomerization of the azobenzene moieties, the 3pseudorotaxane is destabilized, and only one CB7 resides on the axle, surrounding the bipyridinium unit. The system was successfully inserted into the core of liposomes, and preliminary investigations confirmed that it maintains its switching ability.
机译:假轮烷是基于螺纹物质构建分子机器的最简单原型。在这些模型系统中研究分子运动是有效设计工作分子机器和电机的必要行动。在此,我们报告了基于联吡啶和葫芦[7]尿(CB7)之间的相互作用的光活性假轮烷。分子轴由一个中央联吡啶单元和两端的两个偶氮苯部分组成。CB7 可以与该分子形成两种不同的配合物:一种是 [2]假轮烷,其中大环沿着轴的长度快速穿梭,另一种是 [3]假轮烷,其中两个 CB7 被限制在轴的末端。偶氮苯部分反式为顺式异构化后,[3]假轮烷不稳定,只有一个CB7驻留在轴上,围绕着联吡啶单元。该系统成功插入脂质体核心,初步研究证实其保持了转换能力。

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