Department of Physics, Kinki University, 3-4-1 Kowakae, Higashi-Osaka 577-8502, Japan.
1] Faculty of Mathematics and Physics, University of Ljubljana, Jadranska 19, SI-1000 Ljubljana, Slovenia [2] Jožef Stefan Institute, Jamova 39, SI-1000 Ljubljana, Slovenia.
Nature. 2014 Feb 13;506(7487):208-11. doi: 10.1038/nature12938. Epub 2014 Feb 2.
Over the past decade, quasicrystalline order has been observed in many soft-matter systems: in dendritic micelles, in star and tetrablock terpolymer melts and in diblock copolymer and surfactant micelles. The formation of quasicrystals from such a broad range of 'soft' macromolecular micelles suggests that they assemble by a generic mechanism rather than being dependent on the specific chemistry of each system. Indeed, micellar softness has been postulated and shown to lead to quasicrystalline order. Here we theoretically explore this link by studying two-dimensional hard disks decorated with step-like square-shoulder repulsion that mimics, for example, the soft alkyl shell around the aromatic core in dendritic micelles. We find a family of quasicrystals with 10-, 12-, 18- and 24-fold bond orientational order which originate from mosaics of equilateral and isosceles triangles formed by particles arranged core-to-core and shoulder-to-shoulder. The pair interaction responsible for these phases highlights the role of local packing geometry in generating quasicrystallinity in soft matter, complementing the principles that lead to quasicrystal formation in hard tetrahedra. Based on simple interparticle potentials, quasicrystalline mosaics may well find use in diverse applications ranging from improved image reproduction to advanced photonic materials.
在过去的十年中,许多软物质体系中都观察到了准晶有序:在枝状胶束、星形和四嵌段共聚物熔体以及两亲嵌段共聚物和表面活性剂胶束中。如此广泛的“软”高分子胶束能够形成准晶体,这表明它们通过通用机制组装,而不是依赖于每个体系的特定化学性质。事实上,已经提出并表明胶束的柔软性会导致准晶有序。在这里,我们通过研究二维硬磁盘上带有阶跃状方肩排斥的模型来从理论上探索这种联系,这种方肩排斥模拟了枝状胶束中芳香核周围的软烷基壳。我们发现了一族具有 10、12、18 和 24 重键方位有序的准晶体,它们起源于由核心到核心和肩并肩排列的粒子形成的等边三角形和等腰三角形镶嵌。负责这些相的对相互作用突出了局部堆积几何在软物质中产生准晶的作用,补充了导致硬四面体形成准晶的原理。基于简单的粒子间势,准晶镶嵌可能会在从改进的图像再现到先进的光子材料等各种应用中得到应用。