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首页> 外文期刊>ACS Omega >Surface Ordering in Molecular Clusters by Interactions of Well-Defined Parity Multipoles
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Surface Ordering in Molecular Clusters by Interactions of Well-Defined Parity Multipoles

机译:定义良好的奇偶校验多极相互作用在分子簇中的表面有序化

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摘要

The spontaneous alignment of dipoles in patterns tangential or transversal to the interface of molecular clusters is studied by molecular dynamics simulations throughout the entire aggregation process. Tangential ordering (TANGO) is found to rely on dispersion forces driven by dipolar fluctuations. Transversal ordering (TRANSO) results from the interplay of two conditions: the broken translational invariance at the cluster interface and the interactions of multipoles of opposite parity. In this case, the orientational order parameter at the interface follows a universal scaling law behavior. In the limiting case of strongly interacting particles, a sharp structural transition from a disordered into an ordered state is observed at a critical distance inside the cluster and at a critical magnitude of the dipole moment.
机译:在整个聚集过程中,通过分子动力学模拟研究了偶极子在分子簇的界面上相切或横向的自发排列。发现切向有序(TANGO)依赖于偶极波动驱动的色散力。横向排序(TRANSO)是由两个条件的相互作用引起的:簇接口处的平移不变性破裂,以及奇偶性相反的多极相互作用。在这种情况下,界面处的取向顺序参数遵循通用缩放定律行为。在强相互作用粒子的极限情况下,在团簇内部的临界距离和偶极矩的临界大小处观察到从无序状态到有序状态的急剧结构转变。

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