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首页> 外文期刊>The Journal of Chemical Physics >MOLECULAR DYNAMICS STUDIES OF SELF-INTERSTITIALS IN ICE IH
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MOLECULAR DYNAMICS STUDIES OF SELF-INTERSTITIALS IN ICE IH

机译:ICE IH中自我间隙的分子动力学研究

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We carried out molecular dynamics simulations of interstitial water molecules in ice to clarify behavior and vibrational properties of self-interstitials in ice. We used an atom-atom potential model developed by Kumagai er al. [N. Kumagai, K. Kawamura and T. Yokokawa, Mel. Sim. 12, 177 (1994)] which allows intramolecular motions. We confirmed high reliability of the potential model for reproducing the structure and vibrational spectra of ice. From trajectory observations of self-interstitials, we found that a stable interstitial site is an uncapped trigonal site. By comparing power spectra of vibrational motions for self-interstitials with that of matrix ice, we found that the large formation entropy of the interstitial molecule is attributed to much higher density of states in a low frequency region for the interstitial than that for the matrix. (C) 1996 American Institute of Physics. [References: 23]
机译:我们对冰中的间隙水分子进行了分子动力学模拟,以阐明冰中自间隙的行为和振动特性。我们使用了Kumagai等人开发的原子-原子势能模型。 [N. Kumagai,K.Kawamura和T.Yokokawa,梅尔。辛[J.Am.Chem.Soc.12,177(1994)]允许分子内运动。我们确认了用于复制冰的结构和振动谱的潜在模型的高度可靠性。从自我插页式广告的轨迹观察中,我们发现稳定的插页式网站是一个无盖的三角位置。通过比较自填隙层与基质冰的振动运动的功率谱,我们发现,填隙层分子的较大形成熵归因于填隙层的低频区域中的状态密度比基质的高得多。 (C)1996年美国物理研究所。 [参考:23]

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