Issue 39, 2022

Formation and fluctuation of two-dimensional dodecagonal quasicrystals

Abstract

The self-assembly of two-dimensional dodecagonal quasicrystals (DDQCs) from patchy particles is investigated by Brownian dynamics simulations. The patchy particle has a five-fold rotational symmetry pattern described by the spherical harmonics Y55. From the formation of the DDQC obtained by an annealing process, we find the following mechanism. The early stage of the dynamics is dominated by hexagonal structures. Then, nucleation of dodecagonal motifs appears by particle rearrangement, and finally the motifs span the whole system. The transition from the hexagonal structure into the dodecagonal motif is coincident with the collective motion of the particles. The DDQC consists of clusters of dodecagonal motifs, which can be classified into several packing structures. By the analyses of the DDQC under fixed temperature, we find that the fluctuations are characterised by changes in the network of the dodecagonal motifs. Finally we compare the DDQCs assembled from the patchy particle system and isotropic particle system. The two systems share a similar mechanism of the formation and fluctuation of DDQCs.

Graphical abstract: Formation and fluctuation of two-dimensional dodecagonal quasicrystals

Supplementary files

Article information

Article type
Paper
Submitted
16 Jun 2022
Accepted
23 Aug 2022
First published
26 Sep 2022
This article is Open Access
Creative Commons BY-NC license

Soft Matter, 2022,18, 7497-7509

Formation and fluctuation of two-dimensional dodecagonal quasicrystals

U. T. Lieu and N. Yoshinaga, Soft Matter, 2022, 18, 7497 DOI: 10.1039/D2SM00798C

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