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多孔骨架中协同和同步旋转:对受限流体局部和整体输运性质的影响。

Cooperative and synchronized rotation in motorized porous frameworks: impact on local and global transport properties of confined fluids.

机构信息

Department of Inorganic Chemistry, Technische Universität Dresden, Bergstraße 66, 01062 Dresden, Germany.

出版信息

Faraday Discuss. 2021 Feb 1;225:286-300. doi: 10.1039/d0fd00016g. Epub 2020 Nov 2.

Abstract

Molecules in gas and liquid states, as well as in solution, exhibit significant and random Brownian motion. Molecules in the solid-state, although strongly immobilized, can still exhibit significant intramolecular dynamics. However, in most framework materials, these intramolecular dynamics are driven by temperature, and therefore are neither controlled nor spatially or temporarily aligned. In recent years, several examples of molecular machines that allow for a stimuli-responsive control of dynamical motion, such as rotation, have been reported. In this contribution, we investigate the local and global properties of a Lennard-Jones (LJ) fluid surrounding a molecular motor and consider the influence of cooperative and non-directional rotation for a molecular motor-containing pore system. This study uses classical molecular dynamics simulations to describe a minimal model, which was developed to resemble known molecular motors. The properties of an LJ liquid surrounding an isolated molecular motor remain mostly unaffected by the introduced rotation. We then considered an arrangement of motors within a one-dimensional pore. Changes in diffusivity for pore sizes approaching the length of the rotor were observed, resulting from rotation of the motors. We also considered the influence of cooperative motor directionality on the directional transport properties of this confined fluid. Importantly, we discovered that specific unidirectional rotation of altitudinal motors can produce directed diffusion. This study provides an essential insight into molecular machine-containing frameworks, highlighting the specific structural arrangements that can produce directional mass transport.

摘要

气态、液态和溶液中的分子,以及固态中的分子,尽管被强烈固定,但仍能表现出显著的分子内动力学。然而,在大多数骨架材料中,这些分子内动力学是由温度驱动的,因此既不受控制,也没有空间或时间上的定向排列。近年来,已经有一些报道了分子机器的例子,这些分子机器可以实现对动态运动(如旋转)的刺激响应控制。在本研究中,我们研究了围绕分子马达的莱纳德-琼斯(LJ)流体的局部和整体性质,并考虑了协同和非定向旋转对含分子马达的孔系统的影响。这项研究使用经典分子动力学模拟来描述一个最小模型,该模型是为了模拟已知的分子马达而开发的。围绕孤立分子马达的 LJ 液体的性质基本不受引入的旋转的影响。然后,我们考虑了一维孔中马达的排列。由于马达的旋转,观察到接近转子长度的孔尺寸的扩散率发生变化。我们还考虑了协同马达方向性对这种受限流体的定向输运性质的影响。重要的是,我们发现,垂直方向上的分子机器的特定单向旋转可以产生定向扩散。本研究为含分子机器的骨架提供了重要的见解,突出了可以产生定向质量传输的特定结构排列。

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