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Thermodynamic properties of forming methanol-water and ethanol-water clusters at various temperatures and pressures and implications for atmospheric chemistry: A DFT study

机译:在各种温度和压力下形成甲醇 - 水和乙醇 - 水簇的热力学性能及大气化学的影响:DFT研究

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The gas-phase geometries, binding energies, enthalpies, and free energies of methanol - (water)(n) and ethanol - (water)(n) clusters containing n = 1 - 10, 20, 30, 40, and 50 water molecules have been calculated using density functional theory. The binding energies are calculated at 0 K. The enthalpies are calculated at a temperature of 298.15 K and pressure of 1013.25 hPa (1 atm). The free energies are calculated at a wide range of temperature (T) and pressure (P) (from T = 298.15 K, P = 1013.25 hPa to T = 216.65 K, P = 226.32 hPa). The results show that the free energy of the formation of a specific cluster from its free molecules is negative (i.e., favorable) only below some critical temperature and pressure, which depends on the cluster's size. One of the most common volatile organic compounds (VOCs) in the troposphere is methanol, ethanol, and atmospheric aerosols containing methanol and ethanol. The Rayleigh scattering properties of methanol-water and ethanol-water clusters have been investigated. The scattering intensities were computed at static (8 nm) and different wavelengths (700, 600, 500, and 400 nm) of naturally polarized light. Rayleigh scattering intensities increase about 9%-10% at 400 nm compared to the static limit (8 nm) for both methanol-water and ethanol-water clusters. (C) 2021 Elsevier Ltd. All rights reserved.
机译:甲醇 - (水)(n)(n)和乙醇 - (水)(n)簇含有n = 1-10,20,30,40和50个水分子的气相几何形状,结合能量,焓和自由能量已经使用密度泛函理论计算。结合能量在0 k下计算。焓在298.15k的温度下计算,压力为1013.25 hPa(1atm)。自由能量在宽范围的温度(t)和压力(p)(t = 298.15k,p = 1013.25hpa至t = 216.65k,p = 226.32hpa)下计算。结果表明,从其自由分子形成特异性簇的自由能量仅低于一些临界温度和压力,这取决于簇的尺寸。对流层中最常见的挥发性有机化合物(VOC)之一是甲醇,乙醇和含甲醇和乙醇的大气气溶胶。研究了甲醇 - 水和乙醇 - 水簇的瑞利散射性能。在静态(8nm)和不同波长(700,600,500和400nm)的自然偏振光下计算散射强度。与甲醇 - 水和乙醇 - 水簇的静态极限(8nm)相比,瑞利散射强度在400nm下增加约9%-10%。 (c)2021 elestvier有限公司保留所有权利。

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