Solution Thermodynamics of Lysine Clonixinate in Some Ethanol + Water Mixtures
The solubility of lysine clonixinate (LysClon) in several ethanol + water mixtures was determined at 293.15 to 313.15 K. The thermodynamic functions, Gibbs energy, enthalpy, and entropy of solution and of mixing were obtained from these solubility data by using the van’t Hoff and Gibbs equations....
Guardado en:
| Autores principales: | , , |
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| Formato: | Articulo |
| Lenguaje: | Inglés |
| Publicado: |
2012
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| Materias: | |
| Acceso en línea: | http://sedici.unlp.edu.ar/handle/10915/18093 http://www.latamjpharm.org/resumenes/31/2/LAJOP_31_2_1_8.pdf |
| Aporte de: |
| id |
I19-R120-10915-18093 |
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| record_format |
dspace |
| institution |
Universidad Nacional de La Plata |
| institution_str |
I-19 |
| repository_str |
R-120 |
| collection |
SEDICI (UNLP) |
| language |
Inglés |
| topic |
Farmacia Cosolvency; Ethanol; Lysine clonixinate; Solubility; Solution thermodynamics Fenómenos Químicos Solubilidad |
| spellingShingle |
Farmacia Cosolvency; Ethanol; Lysine clonixinate; Solubility; Solution thermodynamics Fenómenos Químicos Solubilidad Delgado, Daniel R. Martínez, Fleming Gutiérrez, Rahumir A. Solution Thermodynamics of Lysine Clonixinate in Some Ethanol + Water Mixtures |
| topic_facet |
Farmacia Cosolvency; Ethanol; Lysine clonixinate; Solubility; Solution thermodynamics Fenómenos Químicos Solubilidad |
| description |
The solubility of lysine clonixinate (LysClon) in several ethanol + water mixtures was determined at 293.15 to 313.15 K. The thermodynamic functions, Gibbs energy, enthalpy, and entropy of solution and of mixing were obtained from these solubility data by using the van’t Hoff and Gibbs equations.
In general this drug exhibit good solubility and the greatest value was obtained in the mixture 0.60 in mass
fraction of ethanol. A non-linear enthalpy–entropy relationship was observed from a plot of enthalpy vs.
Gibbs energy of solution. Accordingly, the driving mechanism for LysClon solubility in water-rich and
ethanol-rich mixtures is the entropy, probably due to water-structure losing around the drug non-polar
moieties by ethanol or increased ionic solvation; whereas, in the medium composition mixtures the driving
mechanism is the enthalpy, probably due to LysClon solvation increase by the co-solvent molecules. |
| format |
Articulo Articulo |
| author |
Delgado, Daniel R. Martínez, Fleming Gutiérrez, Rahumir A. |
| author_facet |
Delgado, Daniel R. Martínez, Fleming Gutiérrez, Rahumir A. |
| author_sort |
Delgado, Daniel R. |
| title |
Solution Thermodynamics of Lysine Clonixinate in Some Ethanol + Water Mixtures |
| title_short |
Solution Thermodynamics of Lysine Clonixinate in Some Ethanol + Water Mixtures |
| title_full |
Solution Thermodynamics of Lysine Clonixinate in Some Ethanol + Water Mixtures |
| title_fullStr |
Solution Thermodynamics of Lysine Clonixinate in Some Ethanol + Water Mixtures |
| title_full_unstemmed |
Solution Thermodynamics of Lysine Clonixinate in Some Ethanol + Water Mixtures |
| title_sort |
solution thermodynamics of lysine clonixinate in some ethanol + water mixtures |
| publishDate |
2012 |
| url |
http://sedici.unlp.edu.ar/handle/10915/18093 http://www.latamjpharm.org/resumenes/31/2/LAJOP_31_2_1_8.pdf |
| work_keys_str_mv |
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| bdutipo_str |
Repositorios |
| _version_ |
1764820463786131456 |