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具有焓和熵斑块的 Archimedean 平铺的自组装。

Self-assembly of Archimedean tilings with enthalpically and entropically patchy polygons.

机构信息

Department of Materials Science and Engineering and ‡Department of Chemical Engineering, University of Michigan , Ann Arbor, Michigan 48109, United States.

出版信息

ACS Nano. 2014 Mar 25;8(3):2918-28. doi: 10.1021/nn500147u. Epub 2014 Feb 11.

Abstract

Considerable progress in the synthesis of anisotropic patchy nanoplates (nanoplatelets) promises a rich variety of highly ordered two-dimensional superlattices. Recent experiments of superlattices assembled from nanoplates confirm the accessibility of exotic phases and motivate the need for a better understanding of the underlying self-assembly mechanisms. Here, we present experimentally accessible, rational design rules for the self-assembly of the Archimedean tilings from polygonal nanoplates. The Archimedean tilings represent a model set of target patterns that (i) contain both simple and complex patterns, (ii) are comprised of simple regular shapes, and (iii) contain patterns with potentially interesting materials properties. Via Monte Carlo simulations, we propose a set of design rules with general applicability to one- and two-component systems of polygons. These design rules, specified by increasing levels of patchiness, correspond to a reduced set of anisotropy dimensions for robust self-assembly of the Archimedean tilings. We show for which tilings entropic patches alone are sufficient for assembly and when short-range enthalpic interactions are required. For the latter, we show how patchy these interactions should be for optimal yield. This study provides a minimal set of guidelines for the design of anisostropic patchy particles that can self-assemble all 11 Archimedean tilings.

摘要

在各向异性的嵌段纳米板(纳米片)的合成方面取得了相当大的进展,这为高度有序的二维超晶格提供了丰富多样的选择。最近对由纳米片组装而成的超晶格的实验证实了奇异相的可及性,并促使人们需要更好地理解潜在的自组装机制。在这里,我们提出了一种实验上可实现的、合理的设计规则,用于从多边形纳米片中自组装阿基米德平铺。阿基米德平铺是一组具有代表性的目标图案,它们 (i) 包含简单和复杂的图案,(ii) 由简单的规则形状组成,(iii) 包含具有潜在有趣材料性质的图案。通过蒙特卡罗模拟,我们提出了一套适用于一价和二价多边形的通用设计规则。这些设计规则,通过增加嵌段程度来指定,对应于阿基米德平铺的稳健自组装的一组减少的各向异性维度。我们展示了哪些平铺仅通过熵斑块就足以进行组装,以及何时需要短程焓相互作用。对于后者,我们展示了这些相互作用应该有多斑块化,才能达到最佳产量。这项研究为设计能够自组装所有 11 种阿基米德平铺的各向异性嵌段粒子提供了一组最小的准则。

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