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溶剂对冠醚/氨基轮烷运动的影响。

Solvent effects on the motion of a crown ether/amino rotaxane.

作者信息

Wu Zhen, Wang Shuangshuang, Zhang Zilin, Zhang Yanjun, Yin Yanzhen, Shi Haixin, Jiao Shufei

机构信息

School of Chemistry and Chemical Engineering, Guangxi University Nanning 530004 China

Guangxi Key Laboratory of Green Chemical Materials and Safety Technology, Beibu Gulf University Qinzhou 535011 China

出版信息

RSC Adv. 2022 Oct 26;12(47):30495-30500. doi: 10.1039/d2ra05453a. eCollection 2022 Oct 24.

Abstract

Solvents have been recognized as a significant factor for modulating the shuttle of rotaxanes and regulating their functions regarding molecular machines by a lot of published studies. The mechanism of the effects of solvents on the motion of crown ether/amino rotaxanes, however, remains unclear. In this work, a rotaxane, formed by dibenzo-24-crown-8 (C[8]) and a dumbbell-shaped axle with two positively charged amino groups, was investigated at the atom level. Two-dimensional free-energy landscapes characterizing the conformational change of C[8] and the shuttling motions in chloroform and water were mapped. The results indicated that the barriers in water were evidently lower than those in chloroform. By analyzing the trajectories, there was no obvious steric effect during shuttling. Instead, the main driving force of shuttling was verified from electrostatic interactions, especially strong hydrogen bonding interactions between the axle and water, which resulted in the fast shuttling rate of the rotaxane. All in all, the polarity and hydrogen bond-forming ability of solvents are the main factors in affecting the shuttling rate of a crown ether/amino rotaxane. In addition, C[8] would adopt S-shaped conformations during shuttling except for situating in the amino sites with C-shaped ones adopted due to π-π stacking interactions. The results of this research improve the comprehension of the solvent modulation ability for shuttling in crown ether-based rotaxanes and illustrate the effects of structural modifications on motions. These new insights are expected to serve the efficient design and construction of molecular machines.

摘要

许多已发表的研究表明,溶剂被认为是调节轮烷穿梭以及调控其在分子机器方面功能的一个重要因素。然而,溶剂对冠醚/氨基轮烷运动影响的机制仍不清楚。在这项工作中,对一种由二苯并 - 24 - 冠 - 8(C[8])和带有两个带正电荷氨基的哑铃形轴形成的轮烷进行了原子水平的研究。绘制了二维自由能景观图,以表征C[8]的构象变化以及在氯仿和水中的穿梭运动。结果表明,在水中的势垒明显低于氯仿中的势垒。通过分析轨迹,穿梭过程中没有明显的空间位阻效应。相反,穿梭的主要驱动力经证实来自静电相互作用,特别是轴与水之间强烈的氢键相互作用,这导致了轮烷的快速穿梭速率。总而言之,溶剂的极性和形成氢键的能力是影响冠醚/氨基轮烷穿梭速率的主要因素。此外,C[8]在穿梭过程中除了位于氨基位点时由于π - π堆积相互作用而采用C形构象外,会采用S形构象。这项研究的结果增进了对基于冠醚的轮烷穿梭的溶剂调节能力的理解,并阐明了结构修饰对运动的影响。这些新见解有望为分子机器的高效设计和构建提供帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59fc/9597606/21110eb479a6/d2ra05453a-f3.jpg

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