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Determination of thermodynamic properties of macroporous glycidyl methacrylate‐based copolymers by inverse gas chromatography
Authors:A B Nastasovi&#x;  A E Onjia  S K Milonji&#x;  S M Jovanovi&#x;
Institution:A. B. Nastasovi?,A. E. Onjia,S. K. Milonji?,S. M. Jovanovi?
Abstract:Macroporous crosslinked poly(glycidyl methacrylate‐co‐ethylene glycol dimethacrylate) (PGME) was synthesized by suspension copolymerization and modified by ring‐opening reaction of the pendant epoxy groups with ethylene diamine (EDA). Inverse gas chromatography (IGC) at infinite dilution was applied to determine the thermodynamic interactions of PGME and modified copolymer, PGME‐en. The specific surface areas of the initial and modified copolymer samples were determined by the BET method, from low‐temperature nitrogen adsorption isotherms. The specific retention volumes, Vurn:x-wiley:08876266:media:POLB20538:tex2gif-stack-1, of 10 organic compounds of different chemical nature and polarity (nonpolar, donor, or acceptor) were determined in the temperature range 333–413 K. The weight fraction activity coefficients of test sorbates, equation image , and Flory–Huggins interaction parameters, equation image , were calculated and discussed in terms of interactions of sorbates with PGME and PGME‐en. Also, the partial molar free energy, equation image , partial molar heat of mixing, equation image , sorption molar free energy, ΔGurn:x-wiley:08876266:media:POLB20538:tex2gif-stack-2, sorption enthalpy ΔHurn:x-wiley:08876266:media:POLB20538:tex2gif-stack-3, and sorption entropy, ΔSurn:x-wiley:08876266:media:POLB20538:tex2gif-stack-4, were calculated. Glass transitions in PGME and PGME‐en, determined from IGC data, were observed in the temperature range 373–393 K and 363–373 K, respectively. © 2005 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 43: 2524–2533, 2005
Keywords:inverse gas chromatography  glycidyl methacrylate copolymer  polymer–  solvent interactions
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