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金刚烷簇的结构:基于全局优化的原子尺度与粗粒度预测

The Structure of Adamantane Clusters: Atomistic vs. Coarse-Grained Predictions From Global Optimization.

作者信息

Hernández-Rojas Javier, Calvo Florent

机构信息

Departamento de Física e IUdEA, Universidad de La Laguna, San Cristóbal de La Laguna, Spain.

Univ. Grenoble Alpes, CNRS, LIPhy, Grenoble, France.

出版信息

Front Chem. 2019 Aug 16;7:573. doi: 10.3389/fchem.2019.00573. eCollection 2019.

Abstract

Candidate structures for the global minima of adamantane clusters, (CH) , are presented. Based on a rigid model for individual molecules with atom-atom pairwise interactions that include Lennard-Jones and Coulomb contributions, low-energy structures were obtained up to = 42 using the basin-hopping method. The results indicate that adamantane clusters initially grow accordingly with an icosahedral packing scheme, followed above = 14 by a structural transition toward face-centered cubic structures. The special stabilities obtained at = 13, 19, and 38 are consistent with these two structural families, and agree with recent mass spectrometry measurements on cationic adamantane clusters. Coarse-graining the intermolecular potential by averaging over all possible orientations only partially confirm the all-atom results, the magic numbers at 13 and 38 being preserved. However, the details near the structural transition are not captured well, because despite their high symmetry the adamantane molecules are still rather anisotropic.

摘要

本文给出了金刚烷团簇(CH) 的全局极小值的候选结构。基于具有原子-原子对相互作用的单个分子的刚性模型,其中包括 Lennard-Jones 和库仑贡献,使用盆地跳跃法获得了高达 = 42 的低能结构。结果表明,金刚烷团簇最初按照二十面体堆积方案生长,在 = 14 以上向面心立方结构发生结构转变。在 = 13、19 和 38 处获得的特殊稳定性与这两个结构族一致,并且与最近对阳离子金刚烷团簇的质谱测量结果相符。通过对所有可能取向进行平均来粗粒化分子间势,仅部分证实了全原子结果,13 和 38 处的幻数得以保留。然而,结构转变附近的细节没有被很好地捕捉到,因为尽管金刚烷分子具有高对称性,但它们仍然相当各向异性。

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