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
Abstract
Gordon C. Kresheck
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.
OpenAlex reports 43 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
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