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基于 Voronoi 粒子的熵稳定胶体晶体的定向组装的对称性考虑。

Symmetry considerations for the targeted assembly of entropically stabilized colloidal crystals via Voronoi particles.

机构信息

†Department of Physics ‡Applied Physics Program §Department of Chemical Engineering and ⊥Department of Materials Science and Engineering, University of Michigan, Ann Arbor, Michigan 48109, United States.

出版信息

ACS Nano. 2015 Mar 24;9(3):2336-44. doi: 10.1021/nn507490j. Epub 2015 Mar 2.

Abstract

The relationship between colloidal building blocks and their assemblies is an active field of research. As a strategy for targeting novel crystal structures, we examine the use of Voronoi particles, which are hard, space-filling particles in the shape of Voronoi cells of a target structure. Although Voronoi particles stabilize their target structure in the limit of high pressure by construction, the thermodynamic assembly of the same structure at moderate pressure, close to the onset of crystallization, is not guaranteed. Indeed, we find that a more symmetric crystal is often preferred due to additional entropic contributions arising from configurational or occupational degeneracy. We characterize the assembly behavior of the Voronoi particles in terms of the symmetries of the building blocks as well as the symmetries of crystal structures and demonstrate how controlling the degeneracies through a modification of particle shape and field-directed assembly can significantly improve the assembly propensity.

摘要

胶体构建块及其组装体之间的关系是一个活跃的研究领域。作为一种针对新型晶体结构的策略,我们研究了使用 Voronoi 粒子的方法,Voronoi 粒子是具有目标结构的 Voronoi 胞形状的硬、空间填充粒子。尽管 Voronoi 粒子通过构建在高压极限下稳定其目标结构,但在接近结晶起始的中等压力下,同样结构的热力学组装并不保证。事实上,我们发现由于来自构型或占据简并的附加熵贡献,通常更倾向于具有更高对称性的晶体。我们根据构建块的对称性以及晶体结构的对称性来描述 Voronoi 粒子的组装行为,并展示了通过改变粒子形状和场定向组装来控制简并性如何显著提高组装倾向。

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