2009
DOI: 10.17533/udea.vitae.2803
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Volumetric Properties of the Pharmaceutical Model Cosolvent System 1,4-Dioxane + Water at Several Temperatures

Abstract: Although the cosolvent system 1,4-dioxane+ water is poisonous, it is widely used in the pharmaceutical sciences as a versatile model for studying drug solubility and some other relevant physicochemical properties in the design of homogeneous dosage forms. For this reason, the excess molar volumes and partial molar volumes of components are investigated from density measurements of the entire range of mass fractions for the 1,4-dioxane + water system at 293.15 K; 298.15 K; 303.15 K; 308.15 K and 313.15 K. The r… Show more

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Cited by 5 publications
(4 citation statements)
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“…In similar way to the behavior obtained in other similar investigations developed in our reseach group with other solvent systems (Jiménez, J. et al 2004;Jiménez, J. & Martínez, F. 2005Ruidiaz, M.A. & Martínez, F., 2009;Rodríguez, S.J.…”
Section: Molar Volumes and Excess Molar Volumessupporting
confidence: 87%
See 1 more Smart Citation
“…In similar way to the behavior obtained in other similar investigations developed in our reseach group with other solvent systems (Jiménez, J. et al 2004;Jiménez, J. & Martínez, F. 2005Ruidiaz, M.A. & Martínez, F., 2009;Rodríguez, S.J.…”
Section: Molar Volumes and Excess Molar Volumessupporting
confidence: 87%
“…Figure 7 shows the Redlich-Kister equation applied to glycerol formal + ethanol data at several temperatures. (7) 2004;Ruidiaz, M.A. & Martínez, F. 2009;Cristancho, D.M.…”
Section: Redlich-kister Equationmentioning
confidence: 99%
“…The isobaric thermal expansion coefficients α p are calculated for each composition to understand the change in the structure of the solution during mixing. On the other hand, in pharmaceutical and chemical performulation studies, it is very important to predict the variation of physicochemical properties related to pharmaceutical dosage forms, with respect to temperature changes . The isobaric thermal expansion coefficients at different temperatures were calculated using the following equation: α p = 1 V m true( V normalm T true) …”
Section: Resultsmentioning
confidence: 99%
“…On the other hand, in pharmaceutical and chemical performulation studies, it is very important to predict the variation of physicochemical properties related to pharmaceutical dosage forms, with respect to temperature changes. 59 The isobaric thermal expansion coefficients at different temperatures were calculated using the following equation:…”
mentioning
confidence: 99%