Journal Article

·2007

A study of some equation‐of‐state parameters of poly(methylhydrosiloxane‐co‐dimethylsiloxane) with some solvents by gas chromatography

Selin Coşkun YTU , Özlem Cankurtaran YTU , Belkıs Bilgin Eran YTU , A. Sezai̇ Saraç YTU

Journal of Applied Polymer Science

Abstract

Abstract Trace amount of methyl acetate, ethyl acetate, tert ‐butyl acetate, pentane, hexane, and heptane were passed through the chromatographic column loaded with poly(methylhydrosiloxane‐ co ‐dimethylsiloxane) coated on Chromosorb W. The retention diagrams of the solvents on the copolymer were plotted by means of specific retention volumes at temperatures between 40 and 80°C by inverse gas chromatography technique. In this study, some thermodynamic interaction parameters such as Flory–Huggins polymer–solvent interaction parameter, equation‐of‐state polymer–solvent interaction parameter, effective exchange energy parameter, and weight fraction activity coefficients at infinite dilution of the solvent were determined. Then, the exchange enthalpy parameter and entropy parameter were determined by using a relation for the enthalpy interaction parameter of the equation‐of‐state theory, which is arranged for the inverse gas chromatography conditions. Later, the partial molar heat of sorption and the partial molar heat of mixing were obtained. The solubility parameter of this copolymer was determined as 6.64 (cal/cm 3 ) 1/2 at room temperature. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci 104: 1627–1631, 2007

Keywords

Inverse gas chromatography Flory–Huggins solution theory Hildebrand solubility parameter Enthalpy Entropy of mixing Thermodynamics Gas chromatography Solvent Chemistry Activity coefficient Polymer Solubility Enthalpy change of solution Copolymer Sorption Chromatography Organic chemistry Aqueous solution Adsorption

Subject Areas

Adsorption, diffusion, and thermodynamic properties of materials ·Spectroscopy ·Physical Sciences
Analytical Chemistry and Chromatography ·Spectroscopy ·Physical Sciences
Chemical Thermodynamics and Molecular Structure ·Organic Chemistry ·Physical Sciences

Citations by Year

OpenAlex SDG Match

SDGs auto-classified by OpenAlex (score ≥ 0.4 shown).

Affordable and clean energy 75%