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High Pressure NMR Study of Transport and Relaxation in Complex Liquids of 2-Ethylhexyl Cyclohexanecarboxylate and 2-Ethylhexyl Benzoate

机译:高压NmR研究2-乙基己基环己烷羧酸盐和2-乙基己基苯甲酸盐复合液体中的迁移和弛豫

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The self-diffusion coefficients, densities, and shear viscosities of liquid 2-ethyl-hexyl cyclohexanecarboxylate (EHC) were measured as a function of pressure from 1 to 4500 bar within the temperature range from -20 to 80 deg C. The Stokes-Einstein equation is applicable over 5 order of magnitude changes in self-diffusion and viscosity. The experimental data obtained are compared to those for the complex liquid of 2-ethylhexyl benzoate (EHB) in order to characterize the molecular structure effect of the replacement of the benzene ring with a saturated cyclohexyl ring. In particular, the low-temperature data suggest that conjugation of the phenyl ring with the ester group in EHB slows down diffusion and increases viscosity in comparison with EHC. Analysis in terms of the rough hard sphere model indicates a high degree of rotational-translational coupling which increases as density increases. Keywords: Diffusion, Viscosity, High pressure, NMR, Hydrodynamic equation, Viscous fluids, Reprints, EHC, EHB, Organic compounds, Liquids, Molecular properties, Carbon atoms. (JG)

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