Publication Type Journal Article
Title Isobaric expansions and isentropic compressions of aqueous binary mixtures of 2-diethylaminoethanol from 283 to 303 K
Authors Isabel M. S. Lampreia FA Dias MJA Barbas A.F. Santos
Groups MTFT
Journal PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Year 2003
Month
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Volume 5
Number 7
Pages 1419-1425
Abstract Densities and ultrasound speeds were determined in aqueous binary mixtures of 2-diethylaminoethanol over the whole composition range at intervals of 5 K in the temperature range between 283 and 303 K. Thermal expansibility effects on this amphiphile/water mixture are analysed in terms of excess molar isobaric expansions E-P,m(E) for the mixture and of excess apparent molar isobaric expansions E-P,phi,i(E) for both chemical substances in the mixture. Different strategies are used and discussed for obtaining limiting (infinite dilution) excess partial molar isobaric expansions. Compressibility effects are described in terms of excess molar isentropic compressions K-S,m(E) and excess partial molar isentropic compressions K-S,i(E). The latter properties are analytically calculated from the fit of experimental K-S,m(E) data to a Redlich-Kister equation. A method based on this equation yields limiting excess partial molar isentropic compressions. Additionally, excess ultrasound speeds u(E) are also examined. All these excess properties are referred to a thermodynamically defined ideal liquid mixture. Interesting insights into the mixing process are gained from the visual impact of plots showing the composition and temperature dependence of different excess molar thermodynamic properties. Comparison of expansibility- and compressibility-related quantities shows that these two types of thermodynamic properties probe different aspects of intermolecular and packing effects on the process of mixing amphiphiles and water.
DOI http://dx.doi.org/10.1039/b211992g
ISBN
Publisher
Book Title
ISSN 1463-9076
EISSN 1463-9084
Conference Name
Bibtex ID ISI:000181523900013
Observations
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