解密星际冰形态:原子模拟揭示乙硫醇的复杂行为

Jeet Majumdar, Shubhadeep Nag, Tejender S Thakur, Subramanian Yashonath, Bhalamurugan Sivaraman, Prabal K. Maiti
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引用次数: 0

摘要

在星际介质(ISM)中探测到的乙硫醇(C$_2$H$_5$SH)分子显示了涉及硫原子的丰富化学成分。然而,它在低温下的行为仍然难以捉摸,尤其是据报道它从无定形相转变为晶体的过程。本研究采用经典分子动力学(MD)模拟再现了乙硫醇的液态特性,并模拟了沉积在 KBr 基底上的乙硫醇薄膜的初始无定形状态。无定形的乙硫醇在温度升高时不会出现自发结晶。此外,乙硫醇冰晶在 KBr 基底上也表现出高温熔化的行为。我们的 MD 模拟没有显示出任何特征性的可逆相变。我们有兴趣继续进行厚冰样品的研究,这超出了我们目前的计算能力。这些发现进一步证实了冷ISM尘粒上冰幔形态的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Deciphering Interstellar Ice Morphology: Atomistic Simulations Reveal the Complex Behavior of Ethanethiol
Ethanethiol (C$_2$H$_5$SH), a molecule detected in the interstellar medium (ISM), indicates the rich chemistry involving sulfur atoms. However, its behavior at low temperatures remains elusive, particularly the reported transition from an amorphous phase to a crystal. This study employs classical molecular dynamics (MD) simulations to reproduce the liquid-state properties of ethanethiol and to simulate the initial amorphous state of ethanethiol films deposited on a KBr substrate. The amorphous ethanethiol did not show spontaneous crystallization upon increasing temperature. Also, ethanethiol ice crystals exhibit melting behavior on KBr substrate at elevated temperatures. Our MD simulations of thin ice samples do not show any signature reversible phase change. It will be interesting to continue this study with a thicker sample, which is beyond our current computational means. These findings underscore the complexity of icy mantle morphology on cold ISM dust grains.
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