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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure,Dynamics,and the Free Energy of Solute Adsorption at Liquid-Vapor Interfaces of Simple Dipolar Systems:Molecular Dynamics Results for Pure and Mixed Stockmayer Fluids
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Structure,Dynamics,and the Free Energy of Solute Adsorption at Liquid-Vapor Interfaces of Simple Dipolar Systems:Molecular Dynamics Results for Pure and Mixed Stockmayer Fluids

机译:简单偶极系统在液-气界面处的结构,动力学和溶质吸附的自由能:纯和混合Stockmayer流体的分子动力学结果

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We have performed molecular dynamics simulation studies of the structural,thermodynamic,and dynamical properties of liquid-vapor interfaces of pure and binary Stockmayer fluids of different polarity.The density profiles,the width of the liquid-vapor interface,and the orientational structure of the interfaces are calculated to characterize the structural aspects of the interfaces.Among the thermodynamic properties,we have computed the surface tension and also the free energy of transfer of a charged solute across the liquid-vapor interface for both pure and mixed fluids.Among the dynamical properties of the interfaces,we have calculated the time dependence of the velocity and angular velocity autocorrelation functions,continuous and intermittent survival probabilities,mean square displacements,diffusion coefficients,and also the dipole correlation functions and orientational relaxation times of interfacial solvent molecules.It is found that the width of the interfaces decreases with increase of concentration of the more polar component.The dipole vectors of the interfacial molecules tend to align parallel to the surfaces and this alignment is enhanced with increasing dipole moment of the fluid molecules.Also,the surface tension shows an increasing trend with increase of dipole moment of the molecules.The dynamical properties of the interfaces are found to be different from those of the corresponding bulk liquid phases.In general,the molecules at the interfaces are found to rotate and translate in the parallel direction at a somewhat faster rate than the bulk molecules.Also,on increase of concentration of the more polar component,the diffusion and orientational relaxation of interfacial molecules are found to show a weaker slowing down than those of the bulk molecules,which can be attributed to the preferential presence of the more polar component in the bulk liquid regions.The temporal behavior of the interfacial survival probabilities reveals a decrease of the survival times with increasing polarity,which can be attributed to a corresponding decrease in the interfacial thickness.Results are presented for both continuous and intermittent survival times and the origins of their differences are discussed.The free energy calculations reveal no minimum at the interfaces for adsorption of a charged solute,which shows that the ions would prefer to stay in the interior of the liquid phases,rather than at interfaces,for these model dipolar systems.
机译:我们已经进行了分子动力学模拟研究,研究了极性不同的纯和二元Stockmayer流体的液-气界面的结构,热力学和动力学性质。密度分布,液-气界面的宽度以及分子的取向结构计算界面以表征界面的结构特征。在热力学性质中,我们已经计算出了表面张力以及带电荷的溶质通过液-气界面传递的纯流体和混合流体的自由能。界面的性质,我们计算了速度和角速度自相关函数,连续和间歇生存概率,均方位移,扩散系数以及界面溶剂分子的偶极相关函数和取向弛豫时间的时间依赖性。发现接口的宽度随着inc界面分子的偶极矢量趋于平行于表面排列,并且随着流体分子偶极矩的增加,这种排列也随之增强。表面张力也随着偶极子的增加而呈现增加的趋势。发现界面的动力学性质不同于相应的本体液相的动力学性质。通常,发现界面处的分子在平行方向旋转和平移的速率比在水平方向上快一些。此外,发现随着极性更大的组分浓度的增加,界面分子的扩散和取向松弛表现出比本体分子慢得多的减弱,这可以归因于极性更大的分子的优先存在。界面生存概率的时间行为揭示了生存率的下降极性增加的val时间,可以归因于界面厚度的相应减小。给出了连续和间歇生存时间的结果,并讨论了它们的差异的根源。自由能计算表明在吸附界面上没有最小值对带电溶质的分析表明,对于这些模型偶极系统,离子更愿意保留在液相内部,而不是界面。

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