paper

Thermodynamics of amide + ketone mixtures. 1. Volumetric, speed of sound and refractive index data for N,N-dimethylformamide + 2-alkanone systems at several temperatures

arXiv:2408.15644 · doi:10.1016/j.jct.2016.02.016

Abstract

Densities, , speeds of sound, , and refractive indices, , have been measured for the systems N,N-dimethylformamide (DMF) + propanone, + 2-butanone, or + 2-pentanone in the temperature () range from 293.15 to 303.15 K and at 298.15 K for the DMF + 2-heptanone mixture. Due to the high volatility of acetone, the corresponding measurements were developed at 293.15 K and 298.15 K. The direct experimental data were used to determine the excess molar volumes, , and the excess refractive indices, , at the working . Values of the excess functions at 298.15 K, for the speed of sound, , the isentropic compressibility, and for the excess thermal expansion coefficient, , were also calculated. The investigated systems are characterized by strong amide-ketone interactions, which become weaker when the alkanone size is increased. This is supported by negative values; by the dependence on and pressure of , and by positive (excess internal pressure) values. Analysis of the systems in terms of the Rao's constant indicates that there is no complex formation. In addition, negative values also reveal the existence of structural effects, which largely contribute to the excess molar enthalpy, . and values increase with the chain length of the 2-alkanone. It allows to conclude that the relative variation with the ketone size is closely related to that of the interactional contribution to this excess function. Molar refraction values, , show that dispersive interactions become more relevant for the systems including longer 2-alkanones.

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