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由自由基对相互作用驱动的水溶液中可切换回文[3]轮烷中环的相对收缩运动。

Relative contractile motion of the rings in a switchable palindromic [3]rotaxane in aqueous solution driven by radical-pairing interactions.

作者信息

Witus Leah S, Hartlieb Karel J, Wang Yuping, Prokofjevs Aleksandrs, Frasconi Marco, Barnes Jonathan C, Dale Edward J, Fahrenbach Albert C, Stoddart J Fraser

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, USA.

出版信息

Org Biomol Chem. 2014 Aug 28;12(32):6089-93. doi: 10.1039/c4ob01228c.

Abstract

Artificial muscles are an essential component for the development of next-generation prosthetic devices, minimally invasive surgical tools, and robotics. This communication describes the design, synthesis, and characterisation of a mechanically interlocked molecule (MIM), capable of switchable and reversible linear molecular motion in aqueous solution that mimics muscular contraction and extension. Compatibility with aqueous solution was achieved in the doubly bistable palindromic [3]rotaxane design by using radical-based molecular recognition as the driving force to induce switching.

摘要

人造肌肉是下一代假肢装置、微创手术工具和机器人技术发展的重要组成部分。本通讯描述了一种机械互锁分子(MIM)的设计、合成和表征,该分子能够在水溶液中进行可切换和可逆的线性分子运动,模拟肌肉的收缩和伸展。通过使用基于自由基的分子识别作为诱导切换的驱动力,在双稳态回文[3]轮烷设计中实现了与水溶液的相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f699/4391646/caf69fff08c1/c4ob01228c-f1.jpg

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