Literature DB >> 33136105

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

Jack D Evans1, Simon Krause, Ben L Feringa.   

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.

Year:  2020        PMID: 33136105     DOI: 10.1039/d0fd00016g

Source DB:  PubMed          Journal:  Faraday Discuss        ISSN: 1359-6640            Impact factor:   4.008


  2 in total

1.  Light-driven molecular motors embedded in covalent organic frameworks.

Authors:  Cosima Stähler; Lars Grunenberg; Maxwell W Terban; Wesley R Browne; Daniel Doellerer; Michael Kathan; Martin Etter; Bettina V Lotsch; Ben L Feringa; Simon Krause
Journal:  Chem Sci       Date:  2022-06-02       Impact factor: 9.969

2.  Emergence of Coupled Rotor Dynamics in Metal-Organic Frameworks via Tuned Steric Interactions.

Authors:  Adrian Gonzalez-Nelson; Srinidhi Mula; Mantas Šimėnas; Sergejus Balčiu Nas; Adam R Altenhof; Cameron S Vojvodin; Stefano Canossa; Ju Ras Banys; Robert W Schurko; François-Xavier Coudert; Monique A van der Veen
Journal:  J Am Chem Soc       Date:  2021-07-29       Impact factor: 15.419

  2 in total

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