4.7 Article

Analyzing and Driving Cluster Formation in Atomistic Simulations

期刊

JOURNAL OF CHEMICAL THEORY AND COMPUTATION
卷 13, 期 3, 页码 1317-1327

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jctc.6b01073

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资金

  1. European Union [ERC-2014-670227-VARMET]
  2. National Center for Computational Design and Discovery of Novel Materials [MARVEL 51NF40_141828]

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In this paper a set of computational tools for identifying the phases contained in a system composed of atoms or molecules is introduced. The method is rooted in graph theory and combines atom centered symmetry functions, adjacency matrices, and clustering algorithms to identify regions of space where the properties of the system constituents can be considered uniform. We show how this method can be used to define collective variables and how these collective variables can be used to enhance the sampling of nucleation events. We then show how this method can be used to analyze simulations of crystal nucleation and growth by using it to analyze simulations of the nucleation of the molecular crystal urea and simulations of nucleation in a semiconducting alloy. The semiconducting alloy example we discuss is particular challenging as multiple nucleation centers are formed. We show, however, that our algorithm is able to detect the grain boundaries in the resulting polycrystal.

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