用反应力场研究水溶液中氟化氢的结构性质。

IF 2.9 2区 化学 Q3 CHEMISTRY, PHYSICAL
Shota Uchida*, , , Kunio Fujiwara, , and , Masahiko Shibahara, 
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引用次数: 0

摘要

由于氟化氢(HF)的高反应性,在原子尺度上对水溶液中氟化氢的动力学不容易进行实验和计算分析。为了阐明HF水溶液的行为和生长过程,本研究采用反应力场的分子动力学模拟研究了HF水溶液的几何和能量性质。首先,我们从键长、振动频率和解离状态等方面检验了之前提出的反应力场在大块HF水溶液体系中的正常运行。此外,在孤立环境下使用从头算方法计算,报道了HF分子的二聚体和三聚体结构对应于HF平行形状的稳定结构。尽管基于(HF)2的平行几何结构,大簇生长在组合中,但它们与水分子的相互作用倾向于限制它们相对于HF分子在某些方向上的生长。团簇主要有两层F原子,沿平面方向扩散和生长。这些发现将为纳米级器件的设计提供有价值的见解,为新的半导体制造工艺铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural Properties of Hydrogen Fluoride in Aqueous Solution Using Reactive Force Field

The dynamics of hydrogen fluoride in aqueous solutions at the atomic scale cannot easily be analyzed experimentally and computationally because of the high reactivity of hydrogen fluoride (HF). To elucidate the behavior and growth process of HF aqueous solutions, this study investigated geometric and energetic properties using molecular dynamics simulations with a reactive force field. First, we examined that the previously proposed reactive force field operates properly in bulk HF aqueous solution systems in terms of bond lengths, vibrational frequencies, and dissociation states. Furthermore, the dimer and trimer structures of the HF molecules corresponded to a stable structure with HF parallel shape, reported using ab initio calculations in an isolated environment. Although large clusters grew in combinations based on the parallel geometry of (HF)2, their interaction with water molecules tended to limit their growth in certain directions relative to the HF molecule. The clusters had mainly two layers of F atoms that spread and grew in the planar direction. These findings would provide valuable insights into the design of nanoscale devices, paving the way for new semiconductor manufacturing processes.

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来源期刊
CiteScore
5.80
自引率
9.10%
发文量
965
审稿时长
1.6 months
期刊介绍: An essential criterion for acceptance of research articles in the journal is that they provide new physical insight. Please refer to the New Physical Insights virtual issue on what constitutes new physical insight. Manuscripts that are essentially reporting data or applications of data are, in general, not suitable for publication in JPC B.
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