1998Journal of the American Chemical SocietyRequires access

A Calorimetric Determination of the Standard Enthalpy and Heat Capacity Changes that Accompany Micelle Formation for Four Long Chain Alkyldimethylphosphine Oxides in H2O and D2O Solution from 15 to 79 °C

Gordon C. Kresheck

Open publisher page 43 citations

Abstract

Relative partial molar enthalpy data were obtained at five degree intervals between 15 and 79 °C for n -C 8 -, C 9 -, and C 10 -dimethylphosphine oxides and between 15 and 60 °C for n -C 11 -dimethylphosphine oxide in H 2 O and D 2 O. The results were used to calculate the standard molar enthalpy and heat capacity changes for micelle formation for comparison with the data previously reported for the C 12 homologue. These values were then used to calculate the temperature dependence of the cmc, which was always lower in D 2 O than in H 2 O solutions. A small temperature dependence of the heat capacity change for micelle formation was observed in both solvents. Changes in thermodynamic parameters that accompany the transfer of the surfactant from H 2 O to D 2 O solution were also determined. It is interesting that differences in heat capacity noted for micelle formation or transfer of monomeric surfactant between the two solvents exhibited a greater dependence on the molecular weight of the surfactants than the corresponding enthalpy and entropy changes.

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Relative partial molar enthalpy data were obtained at five degree intervals between 15 and 79 °C for n -C 8 -, C 9 -, and C 10 -dimethylphosphine oxides and between 15 and 60 °C for n -C 11 -dimethylphosphine oxide in H 2 O and D 2 O. The results were used to calculate the standard molar enthalpy and heat capacity changes for micelle formation for comparison with the data previously reported for the C 12 homologue. These values were then used to calculate the temperature dependence of the cmc, which was always lower in D 2 O than in H 2 O solutions. A small temperature dependence of the heat capacity change for micelle formation was observed in both solvents. Changes in thermodynamic parameters that accompany the transfer of the surfactant from H 2 O to D 2 O solution were also determined. It is interesting that differences in heat capacity noted for micelle formation or transfer of monomeric surfactant between the two solvents exhibited a greater dependence on the molecular weight of the surfactants than the corresponding enthalpy and entropy changes.

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Available abstract

Relative partial molar enthalpy data were obtained at five degree intervals between 15 and 79 °C for n -C 8 -, C 9 -, and C 10 -dimethylphosphine oxides and between 15 and 60 °C for n -C 11 -dimethylphosphine oxide in H 2 O and D 2 O. The results were used to calculate the standard molar enthalpy and heat capacity changes for micelle formation for comparison with the data previously reported for the C 12 homologue. These values were then used to calculate the temperature dependence of the cmc, which was always lower in D 2 O than in H 2 O solutions. A small temperature dependence of the heat capacity change for micelle formation was observed in both solvents. Changes in thermodynamic parameters that accompany the transfer of the surfactant from H 2 O to D 2 O solution were also determined. It is interesting that differences in heat capacity noted for micelle formation or transfer of monomeric surfactant between the two solvents exhibited a greater dependence on the molecular weight of the surfactants than the corresponding enthalpy and entropy changes.

Key concepts: Chemistry, Heat capacity, Enthalpy, Micelle, Standard molar entropy, Thermodynamics, Standard enthalpy of formation, Pulmonary surfactant

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A Calorimetric Determination of the Standard Enthalpy and Heat Capacity Changes that Accompany Micelle Formation for Four Long Chain Alkyldimethylphosphine Oxides in H2O and D2O Solution from 15 to 79 °C — Research Paper | ScholarLens