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Analysis of Physical and Thermodynamic Properties of Poly(2-cyclopentyliden-1,3-dioxolan-4-yl-methylmethacrylate-co-styrene) (CPDMMA-ST) Polymer Using Inverse Gas Chromatography
Corresponding Author(s) : M. Hamdi Karagöz
Asian Journal of Chemistry,
Vol. 27 No. 12 (2015): Vol 27 Issue 12
Abstract
In this study, thermodynamic and physical properties of poly(2-cyclopentyliden-1,3-dioxolane-4-yl-methylmethacrylate-co-styrene) (%55CPDMMA-%45ST) were investigated using inverse gas chromatography. Two groups of alcohols and alkanes with different chemical natures and polarities were used to determine certain properties of (CPDMMA-ST)-solute systems. The specific retention volume (Vg0), glass transition temperature (Tg), adsorption enthalpy (DHa), the sorption enthalpy (DH1S), sorption free energy (DG1S), sorption entropy (DS1S), weight fraction activity coefficients of solute probes at infinite dilution (W1¥), partial molar enthalpy of solute probes at infinite dilution (DH1¥) and Flory-Huggins interaction parameters (c12¥), between polymer and solvents were determined in the temperature range of 313-473 K. In addition, the solubility parameters of CPDMMA-ST at infinite dilution was determined by plotting the graph of [d12-(DG1¥/V1)] versus solubility parameters (d1), of probes.
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- J.M. Braun and J.E. Guillet, Macromolecules, 8, 882 (1975); doi:10.1021/ma60048a035.
- D.G. Gray and J.E. Guillet, Macromolecules, 7, 244 (1974); doi:10.1021/ma60038a017.
- C.T. Chen and Z.Y. Al-Saigh, Macromolecules, 22, 2974 (1989); doi:10.1021/ma00197a017.
- M. Öner and S. Dinçer, Polymer, 28, 279 (1987); doi:10.1016/0032-3861(87)90417-4.
- C.-T. Chen and Z.Y. Al-Saigh, Polymer, 31, 1170 (1990); doi:10.1016/0032-3861(90)90269-5.
- O. Smidsrød and J.E. Guillet, Macromolecules, 2, 272 (1969); doi:10.1021/ma60009a012.
- M. Galin, Macromolecules, 10, 1239 (1977); doi:10.1021/ma60060a016.
- M.H. Karagöz, H. Erge and Z. İlter, Asian J. Chem., 21, 4032 (2009).
- D.D. Deshpande and O.S. Tyagi, Macromolecules, 11, 746 (1978); doi:10.1021/ma60064a026.
- G. Dipaola-Baranyi, J.E. Guillet, J.E. Klein and H.E. Jeberien, J. Chromatogr. A, 166, 349 (1978); doi:10.1016/S0021-9673(00)95616-4.
- J.M. Braun, M. Cutajar, J.E. Guillet, H.P. Schreiber and D. Patterson, Macromolecules, 10, 864 (1977); doi:10.1021/ma60058a029.
- M. Galin and L. Maslinko, Macromolecules, 18, 2192 (1985); doi:10.1021/ma00153a022.
- G. Courval and D.G. Gray, Macromolecules, 8, 326 (1975); doi:10.1021/ma60045a016.
- J.M. Braun and J.E. Guillet, Macromolecules, 10, 101 (1977); doi:10.1021/ma60055a021.
- G. Dipaola-Baranyi and J.E. Guillet, Macromolecules, 11, 228 (1978); doi:10.1021/ma60061a043.
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- R. Sanetra, B.N. Kolarz and A. Wochowicz, Polymer, 28, 1753 (1987); doi:10.1016/0032-3861(87)90020-6.
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- J. Klein and H.-E. Jeberien, Makromol. Chem., 181, 1237 (1980); doi:10.1002/macp.1980.021810608.
- M.H. Karagöz, Ö.S. Zorer and Z. Ilter, Polymer-Plastics Technol. Eng., 45, 785 (2006); doi:10.1080/03602550600611859.
- J.E. Guillet, in ed.: J.H. Purnel, Advances in Analytical Chemistry, In: New developments in Gas Chromatography, John Wiley & Sons, New York (1973).
- Z. Ilter, I. Kaya and A. Açikses, J. Polym. Eng., 22, 45 (2002); doi:10.1515/POLYENG.2002.22.1.45.
- Z. Ilter, E. Özdemir and M. Ahmedzade, Desig. Monomers Polym., 2, 343 (1999); doi:10.1163/156855599X00142.
- Z. Ilter, M. Coskun, I. Erol, A. Unal and M. Ahmedzade, Polym. Degrad. Stab., 75, 501 (2002); doi:10.1016/S0141-3910(01)00253-1.
References
J.M. Braun and J.E. Guillet, Macromolecules, 8, 882 (1975); doi:10.1021/ma60048a035.
D.G. Gray and J.E. Guillet, Macromolecules, 7, 244 (1974); doi:10.1021/ma60038a017.
C.T. Chen and Z.Y. Al-Saigh, Macromolecules, 22, 2974 (1989); doi:10.1021/ma00197a017.
M. Öner and S. Dinçer, Polymer, 28, 279 (1987); doi:10.1016/0032-3861(87)90417-4.
C.-T. Chen and Z.Y. Al-Saigh, Polymer, 31, 1170 (1990); doi:10.1016/0032-3861(90)90269-5.
O. Smidsrød and J.E. Guillet, Macromolecules, 2, 272 (1969); doi:10.1021/ma60009a012.
M. Galin, Macromolecules, 10, 1239 (1977); doi:10.1021/ma60060a016.
M.H. Karagöz, H. Erge and Z. İlter, Asian J. Chem., 21, 4032 (2009).
D.D. Deshpande and O.S. Tyagi, Macromolecules, 11, 746 (1978); doi:10.1021/ma60064a026.
G. Dipaola-Baranyi, J.E. Guillet, J.E. Klein and H.E. Jeberien, J. Chromatogr. A, 166, 349 (1978); doi:10.1016/S0021-9673(00)95616-4.
J.M. Braun, M. Cutajar, J.E. Guillet, H.P. Schreiber and D. Patterson, Macromolecules, 10, 864 (1977); doi:10.1021/ma60058a029.
M. Galin and L. Maslinko, Macromolecules, 18, 2192 (1985); doi:10.1021/ma00153a022.
G. Courval and D.G. Gray, Macromolecules, 8, 326 (1975); doi:10.1021/ma60045a016.
J.M. Braun and J.E. Guillet, Macromolecules, 10, 101 (1977); doi:10.1021/ma60055a021.
G. Dipaola-Baranyi and J.E. Guillet, Macromolecules, 11, 228 (1978); doi:10.1021/ma60061a043.
J.E. Guillet, J. Macromol. Sci. Chem., 4, 1669 (1970); doi:10.1080/00222337008069376.
R. Sanetra, B.N. Kolarz and A. Wochowicz, Polymer, 28, 1753 (1987); doi:10.1016/0032-3861(87)90020-6.
A. Etxeberría, J. Alfageme, C. Uriarte and J.J. Iruin, J. Chromatogr. A, 607, 227 (1992); doi:10.1016/0021-9673(92)87080-R.
J. Klein and H.-E. Jeberien, Makromol. Chem., 181, 1237 (1980); doi:10.1002/macp.1980.021810608.
M.H. Karagöz, Ö.S. Zorer and Z. Ilter, Polymer-Plastics Technol. Eng., 45, 785 (2006); doi:10.1080/03602550600611859.
J.E. Guillet, in ed.: J.H. Purnel, Advances in Analytical Chemistry, In: New developments in Gas Chromatography, John Wiley & Sons, New York (1973).
Z. Ilter, I. Kaya and A. Açikses, J. Polym. Eng., 22, 45 (2002); doi:10.1515/POLYENG.2002.22.1.45.
Z. Ilter, E. Özdemir and M. Ahmedzade, Desig. Monomers Polym., 2, 343 (1999); doi:10.1163/156855599X00142.
Z. Ilter, M. Coskun, I. Erol, A. Unal and M. Ahmedzade, Polym. Degrad. Stab., 75, 501 (2002); doi:10.1016/S0141-3910(01)00253-1.