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首页> 外文期刊>Journal of Molecular Liquids >Self-diffusion coefficients for water and organic solvents in extremely low-density supercritical states
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Self-diffusion coefficients for water and organic solvents in extremely low-density supercritical states

机译:水和有机溶剂在极低密度超临界状态下的自扩散系数

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摘要

Self-diffusion coefficients D for benzene and cyclohexane are determined by using the proton pulsed-field-gradient spin echo (PGSE) method at high temperatures of 150-400 degrees C and in the low-density (0.007-0.21 and 0.005-0.15 g cm(-3) for benzene and cyclohexane, respectively), one-phase region. For benzene, the density-diffusivity product in the zero-density limit divided by the square root of the absolute temperature, (rho D)(0)/root T is smaller than that of the hard sphere model at 150-400 degrees C and decreases with lowering temperature as a reflection of the attractive interaction effect. The (rho D)(0)/root T for cyclohexane is comparable to the hard-sphere value and its temperature dependence is smaller than that for benzene, showing that the effect of the attractive interaction is stronger for benzene than for cyclohexane. The dynamic effect of the hydrogen bonding is discussed through comparison to our previous results on water [J. Chem. Phys., 125. 074307 (2006); J. Chem. Phys. 126. 089901 (2007)].
机译:苯和环己烷的自扩散系数D是通过使用质子脉冲场梯度自旋回波(PGSE)方法在150-400摄氏度的高温和低密度(0.007-0.21和0.005-0.15 g cm(-3)分别表示苯和环己烷),一相区域。对于苯,零密度极限中的密度-扩散乘积除以绝对温度的平方根(rho D)(0)/根T小于在150-400摄氏度和降低温度会降低,反映出有吸引力的相互作用效应。环己烷的(r D)(0)/根T与硬球值相当,并且其温度依赖性小于苯的温度依赖性,这表明苯的吸引相互作用的作用强于环己烷。通过与我们先前的研究结果进行比较,讨论了氢键的动力学效应[J.化学Phys。,125. 074307(2006); J.化学物理126. 089901(2007)]。

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