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Molecular-scale Description of SPAN80 Desorption from the Squalane-Water Interface

机译:SPAN80从Squalane-水界面解吸的分子级描述

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Extensive all-atom molecular dynamics calculations on the water-squalane interface for nine dif- ferent loadings with sorbitan monooleate (SPAN80), at T = 300K, are analyzed for the surface tension equation of state, desorption free energy profiles as they depend on loading, and to evaluate escape times for absorbed SPAN80 into the bulk phases. These results suggest that loading only weakly affects accommodation of a SPAN80 molecule by this squalane-water interface. Specifically, the surface tension equation of state is simple through the range of high tension to high loading studied, and the desorption free energy profiles are weakly dependent on loading here. The per- pendicular motion of the centroid of the SPAN80 head-group ring is well-described by a diffusional model near the minimum of the desorption free energy profile. Lateral diffusional motion is weakly dependent on loading. Escape times evaluated on the basis of a diffusional model and the desorption free energies are 7 x 10~(-2) s (into the squalane) and 3 x 10~2 h (into the water). The latter value is consistent with irreversible absorption observed by related experimental work.
机译:在T = 300K处,分析了与山梨糖醇Monooleate(SPAN80)进行九个不同载荷的水分界面上的全原子分子动力学计算,用于状态张力方程,无解吸自由能量剖面,因为它们取决于载荷,并评估被吸收的SPAN80进入批量相的逃生时间。这些结果表明,载荷仅弱影响了这种尖峰水界面的SPAN80分子的容纳。具体地,状态的表面张力方程通过对研究的高负荷的高张力范围而言,无解吸能量曲线弱依赖于在此造成的缺点。 SPAN80头组环的质心的垂直运动是通过近的解吸无能量曲线的最小的扩散模型进行了良好的描述。横向扩散运动弱依赖于装载。在扩散模型和解吸能量的基础上评估的逃逸时间是7×10〜(-2)(进入角鲨烷)和3×10〜2小时(进入水)。后一个值与相关实验工作观察到的不可逆吸收一致。

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