Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid Esters

In this study, non-ionic surfactants, polyoxyethylene sorbitan fatty acid esters (polysorbate) are chosen to examine the temperature effect on the CMC over a wide temperature range. The enthalpy and entropy of micelle formation are evaluated according to the phase separation model. The surface tensi...

Full description

Bibliographic Details
Main Authors: Ehsan Mohajeri, Gholamreza Dehghan Noudeh
Format: Article
Language:English
Published: Hindawi Limited 2012-01-01
Series:E-Journal of Chemistry
Online Access:http://dx.doi.org/10.1155/2012/961739
id doaj-74841c2efc884318809e290fccca697b
record_format Article
spelling doaj-74841c2efc884318809e290fccca697b2020-11-25T00:35:13ZengHindawi LimitedE-Journal of Chemistry0973-49452090-98102012-01-01942268227410.1155/2012/961739Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid EstersEhsan Mohajeri0Gholamreza Dehghan Noudeh1Faculty of Pharmacy, Kerman University of Medical Sciences, Kerman, IranPharmaceutics Research Center, Kerman University of Medical Sciences, Kerman, IranIn this study, non-ionic surfactants, polyoxyethylene sorbitan fatty acid esters (polysorbate) are chosen to examine the temperature effect on the CMC over a wide temperature range. The enthalpy and entropy of micelle formation are evaluated according to the phase separation model. The surface tension of solutions was determined by means of Du Nöuys ring. The CMC values were taken from the sharp breaks in the surface tension vs. logarithms of surfactant concentration plots. As the surfactants' chain length increases the CMC at a constant temperature decreases, which is directly related to the decrease of hydrophilicity of the molecules. For each surfactant, as the system temperature increases, the CMC initially decreases and then increases, owing to the smaller probability of hydrogen bond formation at higher temperatures. The onset of micellization tends to occur at higher concentrations as the temperature increases. To evaluate the enthalpy of micellization, the CMCs are first correlated by a polynomial equation. It is found that ∆Gºm decreases monotonically as the temperature increases over the whole temperature range. Both ∆Hºm and ∆Sºm appear to be decrease monotonically with an increase in temperature. The compensation temperature was found to be 42 ºC by linear regression over the whole temperature range and for all three surfactant systems together.http://dx.doi.org/10.1155/2012/961739
collection DOAJ
language English
format Article
sources DOAJ
author Ehsan Mohajeri
Gholamreza Dehghan Noudeh
spellingShingle Ehsan Mohajeri
Gholamreza Dehghan Noudeh
Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid Esters
E-Journal of Chemistry
author_facet Ehsan Mohajeri
Gholamreza Dehghan Noudeh
author_sort Ehsan Mohajeri
title Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid Esters
title_short Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid Esters
title_full Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid Esters
title_fullStr Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid Esters
title_full_unstemmed Effect of Temperature on the Critical Micelle Concentration and Micellization Thermodynamic of Nonionic Surfactants: Polyoxyethylene Sorbitan Fatty Acid Esters
title_sort effect of temperature on the critical micelle concentration and micellization thermodynamic of nonionic surfactants: polyoxyethylene sorbitan fatty acid esters
publisher Hindawi Limited
series E-Journal of Chemistry
issn 0973-4945
2090-9810
publishDate 2012-01-01
description In this study, non-ionic surfactants, polyoxyethylene sorbitan fatty acid esters (polysorbate) are chosen to examine the temperature effect on the CMC over a wide temperature range. The enthalpy and entropy of micelle formation are evaluated according to the phase separation model. The surface tension of solutions was determined by means of Du Nöuys ring. The CMC values were taken from the sharp breaks in the surface tension vs. logarithms of surfactant concentration plots. As the surfactants' chain length increases the CMC at a constant temperature decreases, which is directly related to the decrease of hydrophilicity of the molecules. For each surfactant, as the system temperature increases, the CMC initially decreases and then increases, owing to the smaller probability of hydrogen bond formation at higher temperatures. The onset of micellization tends to occur at higher concentrations as the temperature increases. To evaluate the enthalpy of micellization, the CMCs are first correlated by a polynomial equation. It is found that ∆Gºm decreases monotonically as the temperature increases over the whole temperature range. Both ∆Hºm and ∆Sºm appear to be decrease monotonically with an increase in temperature. The compensation temperature was found to be 42 ºC by linear regression over the whole temperature range and for all three surfactant systems together.
url http://dx.doi.org/10.1155/2012/961739
work_keys_str_mv AT ehsanmohajeri effectoftemperatureonthecriticalmicelleconcentrationandmicellizationthermodynamicofnonionicsurfactantspolyoxyethylenesorbitanfattyacidesters
AT gholamrezadehghannoudeh effectoftemperatureonthecriticalmicelleconcentrationandmicellizationthermodynamicofnonionicsurfactantspolyoxyethylenesorbitanfattyacidesters
_version_ 1725309739859968000