Adsorption of C2-C5 alcohols on ice: A grand canonical Monte Carlo simulation study.

J. Joliat, S. Picaud, A. Patt, P. Jedlovszky
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引用次数: 4

Abstract

In this paper, we report grand canonical Monte Carlo simulations performed to characterize the adsorption of four linear alcohol molecules, comprising between two and five carbon atoms (namely, ethanol, n-propanol, n-butanol, and n-pentanol) on crystalline ice in a temperature range typical of the Earth's troposphere. The adsorption details analyzed at 228 K show that, at low coverage of the ice surface, the polar head of the adsorbed molecules tends to optimize its hydrogen bonding with the surrounding water, whereas the aliphatic chain lies more or less parallel to the ice surface. With increasing coverage, the lateral interactions between the adsorbed alcohol molecules lead to the reorientation of the aliphatic chains that tend to become perpendicular to the surface; the adsorbed molecules pointing thus their terminal methyl group up to the gas phase. When compared to the experimental data, the simulated and measured isotherms show a very good agreement, although a small temperature shift between simulations and experiments could be inferred from simulations at various temperatures. In addition, this agreement appears to be better for ethanol and n-propanol than for n-butanol and n-pentanol, especially at the highest pressures investigated, pointing to a possible slight underestimation of the lateral interactions between the largest alcohol molecules by the interaction potential model used. Nevertheless, the global accuracy of the approach used, as tested under tropospheric conditions, opens the way for its use in modeling studies also relevant to another (e.g., astrophysical) context.
C2-C5醇在冰上的吸附:一个大规范蒙特卡罗模拟研究。
在本文中,我们报告了在典型的地球对流层温度范围内,为表征四种线性醇分子(即乙醇、正丙醇、正丁醇和正戊醇)在结晶冰上的吸附而进行的大规范蒙特卡罗模拟。在228 K下分析的吸附细节表明,在冰表面覆盖率低的情况下,被吸附分子的极性头部倾向于优化其与周围水的氢键,而脂肪链则或多或少地平行于冰表面。随着覆盖范围的增加,被吸附的醇分子之间的横向相互作用导致脂肪链的重新定向,趋向于垂直于表面;因此,被吸附的分子将其末端甲基指向气相。与实验数据相比,模拟和测量的等温线显示出非常好的一致性,尽管在不同温度下的模拟和实验之间可以推断出较小的温度变化。此外,这种一致性似乎对乙醇和正丙醇比对正丁醇和正戊醇更好,特别是在研究的最高压力下,这表明所使用的相互作用势模型可能略微低估了最大醇分子之间的横向相互作用。尽管如此,在对流层条件下测试的所使用方法的全球准确性为其在与另一背景(例如天体物理学)相关的建模研究中的应用开辟了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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