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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Adsorption of Fluorinated Methane Derivatives at the Surface of Ice under Tropospheric Conditions, As Seen from Grand Canonical Monte Carlo Simulations
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Adsorption of Fluorinated Methane Derivatives at the Surface of Ice under Tropospheric Conditions, As Seen from Grand Canonical Monte Carlo Simulations

机译:对流层大气条件下冰表面氟化甲烷衍生物的吸附,从大经典蒙特卡洛模拟中可以看出

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摘要

The adsorption of the fluorinated methane derivatives, CHnF4-n, at the (0001) surface of Ih ice is studied by grand canonical Monte Carlo computer simulation at the tropospheric temperature of 200 K. It is found that CH4 and CF4 adsorbs rather weakly, while CH3F, CH2F2, and CHF3 exhibit multilayer adsorption. The vapor phase of CH4 and CF4 turns out to be rather dense, in accordance with the fact that CF4 is already rather close to, while CH4 is already above, its critical point. Adsorbed CH3F molecules, being in contact with the ice phase, turn with their H atoms toward the ice surface, forming several weak, C-H donated hydrogen bonds with the surface water molecules. By contrast, CH2F2 and CHF3 molecules are found to turn at least one of their F atoms toward the ice phase, forming strong, O-H donated hydrogen bonds with surface waters, in accordance with former infrared (IR) spectroscopy data. Once all hydrogen-bonding positions are occupied, the first molecular layer of these molecules is not yet saturated. Thus, further molecules can be adsorbed in contact with the ice phase, but without forming hydrogen bonds with it.
机译:通过对流层温度为200 K的大经典Monte Carlo计算机模拟研究了氟化甲烷衍生物CHnF4-n在Ih冰的(0001)表面上的吸附。发现CH4和CF4吸附较弱,而CH4和CF4吸附较弱。 CH3F,CH2F2和CHF3表现出多层吸附。根据CF4已经非常接近临界点而CH4已经高于临界点这一事实,CH4和CF4的气相变得相当稠密。与冰相接触的被吸附的CH3F分子,其H原子转向冰表面,与地表水分子形成几个弱的C-H氢键。相比之下,根据以前的红外(IR)光谱数据,发现CH2F2和CHF3分子将其F原子中的至少一个转向冰相,与地表水形成牢固的O-H捐赠氢键。一旦所有氢键位置都被占据,这些分子的第一分子层尚未饱和。因此,其他分子可以与冰相接触而被吸附,但不与冰相形成氢键。

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