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胶体晶体的平衡形状。

Equilibrium Shape of Colloidal Crystals.

作者信息

Sehgal Ray M, Maroudas Dimitrios

机构信息

Department of Chemical Engineering, Princeton University , Princeton, New Jersey 08544, United States.

Department of Chemical Engineering, University of Massachusetts , Amherst, Massachusetts 01003, United States.

出版信息

Langmuir. 2015 Oct 27;31(42):11428-37. doi: 10.1021/acs.langmuir.5b02952. Epub 2015 Oct 15.

Abstract

Assembling colloidal particles into highly ordered configurations, such as photonic crystals, has significant potential for enabling a broad range of new technologies. Facilitating the nucleation of colloidal crystals and developing successful crystal growth strategies require a fundamental understanding of the equilibrium structure and morphology of small colloidal assemblies. Here, we report the results of a novel computational approach to determine the equilibrium shape of assemblies of colloidal particles that interact via an experimentally validated pair potential. While the well-known Wulff construction can accurately capture the equilibrium shape of large colloidal assemblies, containing O(10(4)) or more particles, determining the equilibrium shape of small colloidal assemblies of O(10) particles requires a generalized Wulff construction technique which we have developed for a proper description of equilibrium structure and morphology of small crystals. We identify and characterize fully several "magic" clusters which are significantly more stable than other similarly sized clusters.

摘要

将胶体颗粒组装成高度有序的结构,如光子晶体,对于实现广泛的新技术具有巨大潜力。促进胶体晶体的成核并开发成功的晶体生长策略需要对小型胶体聚集体的平衡结构和形态有基本的了解。在这里,我们报告了一种新颖的计算方法的结果,该方法用于确定通过实验验证的对势相互作用的胶体颗粒聚集体的平衡形状。虽然著名的伍尔夫构造可以准确捕捉包含O(10⁴)或更多颗粒的大型胶体聚集体的平衡形状,但确定O(10)颗粒的小型胶体聚集体的平衡形状需要我们开发的广义伍尔夫构造技术,以便正确描述小晶体的平衡结构和形态。我们识别并充分表征了几个“神奇”簇,它们比其他大小相似的簇稳定得多。

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