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星际条件下甲胺在非晶冰上的吸附:巨正则蒙特卡罗模拟研究

Adsorption of Methylamine on Amorphous Ice under Interstellar Conditions. A Grand Canonical Monte Carlo Simulation Study.

作者信息

Horváth Réka A, Hantal György, Picaud Sylvain, Szőri Milán, Jedlovszky Pál

机构信息

Apáczai Csere János School of the ELTE University , Papnövelde u. 4 , H-1053 Budapest , Hungary.

Faculty of Physics , University of Vienna , Boltzmanngasse 5, A-1090 Vienna , Austria.

出版信息

J Phys Chem A. 2018 Apr 5;122(13):3398-3412. doi: 10.1021/acs.jpca.8b01591. Epub 2018 Mar 23.

Abstract

The adsorption of methylamine at the surface of amorphous ice is studied at various temperatures, ranging from 20 to 200 K, by grand canonical Monte Carlo simulations under conditions that are characteristic to the interstellar medium (ISM). The results are also compared with those obtained earlier on crystalline ( I) ice. We found that methylamine has a strong ability of being adsorbed on amorphous ice, involving also multilayer adsorption. The decrease of the temperature leads to a substantial increase of this adsorption ability; thus, considerable adsorption is seen at 20-50 K even at bulk gas phase concentrations that are comparable with that of the ISM. Further, methylamine molecules can also be dissolved in the bulk amorphous ice phase. Both the adsorption capacity of amorphous ice and the strength of the adsorption on it are found to be clearly larger than those corresponding to crystalline ( I) ice, due to the molecular scale roughness of the amorphous ice surface as well as to the lack of clear orientational preferences of the water molecules at this surface. Thus, the surface density of the saturated adsorption monolayer is estimated to be 12.6 ± 0.4 μmol/m, 20% larger than the value of 10.35 μmol/m, obtained earlier for I ice, and at low enough surface coverages the adsorbed methylamine molecules are found to easily form up to three hydrogen bonds with the surface water molecules. The estimated heat of adsorption at infinitely low surface coverage is calculated to be -69 ± 5 kJ/mol, being rather close to the estimated heat of solvation in the bulk amorphous ice phase of -74 ± 7 kJ/mol, indicating that there are at least a few positions at the surface where the adsorbed methylamine molecules experience a bulk-like local environment.

摘要

通过巨正则蒙特卡罗模拟,在星际介质(ISM)特有的条件下,研究了甲胺在20至200K的不同温度下在非晶冰表面的吸附情况。研究结果还与之前在结晶(I)冰上获得的结果进行了比较。我们发现甲胺具有很强的吸附在非晶冰上的能力,包括多层吸附。温度降低会导致这种吸附能力大幅增加;因此,即使在与ISM相当的体气相浓度下,在20 - 50K时也能看到大量吸附。此外,甲胺分子也可以溶解在非晶冰的主体相中。由于非晶冰表面的分子尺度粗糙度以及该表面水分子缺乏明确的取向偏好,发现非晶冰的吸附容量及其对甲胺的吸附强度明显大于结晶(I)冰的相应值。因此,饱和吸附单层的表面密度估计为12.6±0.4μmol/m²,比之前I型冰得到的10.35μmol/m²的值大20%,并且在足够低的表面覆盖率下,发现吸附的甲胺分子很容易与表面水分子形成多达三个氢键。在无限低表面覆盖率下估计的吸附热计算为 - 69±5kJ/mol,与在非晶冰主体相中估计的 - 74±7kJ/mol的溶剂化热相当接近,这表明在表面至少有一些位置,吸附的甲胺分子经历类似主体的局部环境。

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