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化学自驱动球形二聚体的动力学与自组装

The dynamics and self-assembly of chemically self-propelled sphere dimers.

作者信息

Chen Jiang-Xing, Yuan Renbo, Cui Rufei, Qiao Liyan

机构信息

Department of Physics, Hangzhou Dianzi University, Hangzhou 310018, China.

出版信息

Nanoscale. 2021 Jan 14;13(2):1055-1060. doi: 10.1039/d0nr06368a. Epub 2021 Jan 4.

Abstract

The dynamics of chemically powered sphere dimers at the micro- and nano-scales confined in a quasi-two-dimensional geometry are investigated. The dimer consists of a Janus particle and a non-catalytic sphere. A chemical reaction taking place on the catalytic surface of the Janus particle creates asymmetric concentration gradients that give rise to the self-propulsion of both rotation and translation of the dimer. Due to the chemical interactions, ensembles of dimers spontaneously form anti-parallel aligned doublets that exhibit the same rotation direction and lose translational motion. The chirality of the dimer plays an important role in the process of doublet formation. The study displays new collective dynamics and structures when both translational and rotational self-propulsion occur.

摘要

研究了限制在准二维几何结构中微纳尺度下化学驱动的球形二聚体的动力学。该二聚体由一个 Janus 粒子和一个非催化球体组成。在 Janus 粒子的催化表面发生的化学反应产生不对称的浓度梯度,从而导致二聚体的旋转和平移自推进。由于化学相互作用,二聚体集合体自发形成反平行排列的双联体,它们表现出相同的旋转方向并失去平移运动。二聚体的手性在双联体形成过程中起着重要作用。该研究展示了平移和旋转自推进同时发生时新的集体动力学和结构。

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