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dc.contributor.authorDelgado, DR
dc.contributor.authorRodr?guez, GA
dc.contributor.authorHolgu?n, AR
dc.contributor.authorMart?nez, F
dc.contributor.authorJouyban, A
dc.date.accessioned2018-08-26T09:35:45Z
dc.date.available2018-08-26T09:35:45Z
dc.date.issued2013
dc.identifier.urihttp://dspace.tbzmed.ac.ir:8080/xmlui/handle/123456789/57909
dc.description.abstractThe solubility of sulfapyridine (SP) in propylene glycol+water mixtures was determined at temperatures from 293.15K to 313.15K. The solubility was maximal in pure propylene glycol and minimum in pure water at all the temperatures. The thermodynamic functions; Gibbs energy, enthalpy, and entropy of solution were obtained from these solubility data by using the van't Hoff and Gibbs equations. Thermodynamic quantities of mixing were also calculated by using calorimetric values related to drug fusion process. A nonlinear enthalpy-entropy relationship was observed from a plot of enthalpy vs. Gibbs energy of solution. The plot of ?solnH° vs. ?solnG° shows two different trends, one with negative slope from pure water up to 0.30 mass fraction of propylene glycol and the other one positive beyond this composition up to pure propylene glycol. Accordingly, the driving mechanism for SP solubility in water-rich mixtures is the entropy, probably due to water-structure loss around the drug non-polar moieties by effect of propylene glycol, whereas, above 0.30 mass fraction of propylene glycol the driving mechanism is the enthalpy, probably due to SP solvation increase by the co-solvent molecules. This behavior is similar to the one exhibited by sulfanilamide, sulfamethizole and other drugs in the same co-solvent mixtures. The Generated solubility data were calculated (correlated and/or predicted) with the Jouyban-Acree model in which the mean percentage deviation (MPD) of the correlated and predicted data were 9.3±8.6%, and 12.1±9.9%, respectively. The corresponding MPDs for the correlated and predicted solubilities using the log-linear model were 25.1±19.8%, and 55.1±32.4%. The density of saturated solutions was predicted using a previously trained model. The ?solnH° and ?solnG° values were also correlated using a proposed model. © 2012 Elsevier B.V.
dc.language.isoEnglish
dc.relation.ispartofFluid Phase Equilibria
dc.subjectCosolvent mixtures
dc.subjectCosolvents
dc.subjectDriving mechanism
dc.subjectEnthalpy-entropy relationship
dc.subjectFusion process
dc.subjectGibbs equation
dc.subjectJouyban-Acree model
dc.subjectLoglinear model
dc.subjectMass fraction
dc.subjectMean percentage
dc.subjectNegative slope
dc.subjectNon-polar moiety
dc.subjectPropylene glycol+water mixtures
dc.subjectPropylene glycols
dc.subjectPure water
dc.subjectSaturated solutions
dc.subjectSolubility data
dc.subjectSolution thermodynamics
dc.subjectSulfamethizole
dc.subjectSulfapyridine
dc.subjectThermodynamic functions
dc.subjectThermodynamic quantities
dc.subjectVan't Hoff
dc.subjectActivity coefficients
dc.subjectEnthalpy
dc.subjectEntropy
dc.subjectGibbs free energy
dc.subjectMixtures
dc.subjectRegression analysis
dc.subjectThermodynamics
dc.subjectSolubility
dc.titleSolubility of sulfapyridine in propylene glycol+water mixtures and correlation with the Jouyban-Acree model
dc.typeArticle
dc.citation.volume341
dc.citation.spage86
dc.citation.epage95
dc.citation.indexScopus
dc.identifier.DOIhttps://doi.org/10.1016/j.fluid.2012.12.017


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