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DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ

Year 2018, Volume: 13 Issue: 2, 7 - 23, 22.04.2018

Abstract

Bu çalışmada, P(DEAMSt0.19-ko-MMA)’polimerinin,(polimer-prob) sistemine ait bazı fiziksel ve
termodinamik özellikleri ters gaz kromatoğrafisi metoduyla incelendi. Bu
amaçla, kopolimer kromosorb-W destek katısı üzerine kaplanarak çelik kolon
içine dolduruldu. Çalışmada prob olarak fiziklsel ve kimyasal özellikleri
farklı olan bir seri alkol ve alkanlar kullanıldı. 333-473 K aralığında her 10ºC’de
bir enjeksiyon yapılarak probların kopolimer üzerindeki spesifik alıkonma
süreleri bulundu. Bu sürelerden spesifik alıkonma hacimleri hesaplandı. 1/T;
lnVg0 grafiğinden kopolimerin camsı geçiş sıcaklığı (Tg) 110ºC
olarak belirlendi. Camsı geçiş sıcaklığı altındaki sıcaklıklarda probların
kopolimer üzerindeki adsorpsiyon ısıları hesaplandı.
Alkollerin adsorpsiyon ısıları, alkanlarınkine göre
daha yüksek olduğu gözlendi.Camsı geçiş sıcaklığı üzerinde,
sorpsiyona ait
DG1s, DH1s ve DS1s değerleri tayin edildi.
Sonsuz seyreltik hal için, probların ağırlık kesri aktiflik katsayısı (a1/w1)
¥, Flory-Huggins etkileşim parametresi , kısmi molar
serbest enerjileri
DG1¥ ve kısmi molar ısı DH1¥ değerleri bulundu. Bu değerler(polimer-çözücü
olmayan) sistemleri için bulunan değerlerle uygunluk gösterdi. Ayrıca,
kopolimerin çözünürlük parametreleri
d2, Flory-Huggins etkileşiminin parametresi değerlerinden faydalanılarak
hesaplandı. Kopolimerin çözünürlük parametresinin sıcaklıkla azaldığı görüldü. Probların
camsı geçiş sıcaklığı altında kopolimer için çözücü olmadığı belirlendi.

References

  • 1. Smidsrod, O. and Guillet, J.E., (1969). Study of Polymer-Solute İnteractions by Gas Chromeatography. Macromolecules, 11(1): 228–235.
  • 2. Temüz, M.M., Coşkun, M. and Açıkses, A., (2006). Determination of Some Thermodynamic Parameters of Poly(Styrene-Graft-Ethyl Methacrylate) Using Invers Gas Chromatography, Journal of Macromolecules Science, Part A: Pure and Applied Chemistry, 43, 609-619.
  • 3. Chen, C.T. and Al Saigh, Z.Y., (1989). Characterization of Semi Crystalline Polymers by IGC I: Poly (Vinylidene Fluoride), Macromolecules, 22, 2974.
  • 4. Corder, J.R. and Young, C.L., (1979). Physicochemical Measurement by Gas Chromatography, Wiley, New York.
  • 5. Al-Saigh, Z.Y., (1996). Inverse Gas Chromatographic Characterization of Polyethylene Oxide Chromatography, Polymer, 40, 25-32.
  • 6. Voelkel, A., Janasj. J., and Garcia-Dominguez, A., (1993). Inverse Gas Chromatography in Characterization of Surfactants: Determination of Binary Parameter, Journal of Chromatography A, Volume: 654, Issue: 1, 12, Pages: 135-141.
  • 7. Etxeberria A., Alfageme J., Uriarte C., and Iruin J.J., (1992). Inverse Gas Chromeatography in The Charecterization of Polymeric Materials. J. of Chromeatography, 607: 227.
  • 8. Braun, J.M. and Guillet, J.E, (1977). Determination of Crystallinity by Gas Chromatography Effect of Gurvilinearity of Retention Ditagrams, Macromolecules, 10, 101.
  • 9. Guillet, J.E. and Purnel, J.H., (1973). Advences in Analytical Chemistry and Instrumentation; Wiley; New York,
  • 10. Reid, C.R., Parusnitz, J.M., and Sherwood, T.K., (1977). The Properties Of Gases and Liquids, Third Ed. Mcgraw-Hill, New York, P.61. 11. Acikses, A., Taskan, G., and Barim, G., (2018). A Study on Copolymer Systems of Styrene With Diethanolamine Side Group and Methyl Methacrylate. Hindawi,Journal of Chemistry. (Baskıda).
  • 12. Jin, X.R., (1987). Gas Chromatography, High Inducation Pres, Shanghai, P. 29.
  • 13. Sanetra, R., Kolarz, B.N., and Wlochowicz, A., (1987). Determination of Thermodynamic Data Fort He Interaction of Aliphatic Alcohols with Poly (Styreneco-Divinyl Benzene) Using Inverse Gas Chromeatography. Polymer, 28: 1753.
  • 14. Mandal, B.M., Bhattacharya, C., and Bhattacharya, S.N., (1989). Thermodynamic Characterization of Binary Polymer Blends by Inverse Gas-Chromatography, Journal of Macromolecular Science-Chemstry, A26: 1, 175-212.
  • 15. Karagöz, M.H., Erge, M.H., and İlter, Z., (2009). Analysis Of Physical And Thermodynamic Properties of Poly(2-Phenyl-1,3-Dioxolane-4-yl-Methyl-Methacrylate-co-Ethyl Methacrylate) Polymer with Inverse Gas Chromatography, Asian Journal of Chemistry, Vol. 21, No. 5, 403.
  • 16. Al-Saigh, Z.Y., (1987). Miscibility and Surface Characterization of a Poly(Vinylidene Fluoride)- Poly(Vinyl Methyl Ketone) Blend by Inverse Gas Chromatography, Polymer, 40: 3479 .
  • 17. Corder, J.R. and Young, C.L., (1979). Physicochemical Measurement by Gas Chromatography, Wiley, New York.
  • 18. Kaya, İ. and Özdemir, E., (1999). Thermodynamic Interactions and Characterization of Poly (İsobornyl Methacrylate) by Inverse Gas Chromatography at Various Temperatures, Polymer, 40, 2405–2410.
  • 19. Ilter, Z., Kaya, I., and Açıkses, A., (2002). Determination of Thermodynamic Properties of Poly [(2-Phenyl-1,3-Dioxolane-4-Yl) Methylmethacrylate], journal of Plymer Engineering, 22,45.
  • 20. Chen, C.T. and Al-Saigh, Z.Y., (1990). Charectrization of Poly (Ethyl-Methacrylat) by Inverse Gas Chromeatography. Polymer, 3, 1170. 21. Reid, C.R., Prausnitz, J.M., and Sherwood, T.K., (1977). The Properties of Gases and Liquids, 3rd Ed., Mcgraw-Hill, New York, P. 61.
  • 22. Guillet, J.E. and Purnel, J.H., (1973). Advences in Analytical Chemistry and Instrumentation Gas Chromatography, New York.
  • 23. Açıkses, A., Aksar, S., (2009). Synthesis, Characterization and Thermodynamic Parameters of Poly(3-Mesityl-2-Oxopropyl Methacrylate), Turkish Journal of Science & Technology Volume 4, No 2, 127-137.
  • 24. İlter, Z., Öncü, İ., Karagöz, M.H., Ercan, S., and Alhanlı, F., (2016). Synthesis, Characterization and Thermodynamic Properties of Two New 1,3-Dioxolane Containing Copolymers, Journal of The Chemical Society of Pakistan, Vol. 38, No. 3.
  • 25. Klein, J. and Jeberien, H.E., (1980). Depence of Thermodynamic Properties of Poly(Ethylene Glicol), Macromolecules Chemistry, 181, 1237.
  • 26. Açıkses, A., Kaya, İ., and Horoz, G., (2006). Synthesis, Charectrization and Thermodynamic Properties of Poly (3-Mesitiltyl–2-Hydroxypropyl Methacrylate), Journal of Applied Polymer Science, Vol. 101, 101-109.
  • 27. Sanetra, R., Kolarz, B.N., and Wlochowicz, A., (1987). Determination of Thermodynamic Data for the Interaction of Aliphatic Alcohols With Poly (Styreneco-Divinyl Benzene) Using Inverse Gas Chromeatography. Polymer, 28: 1753.
  • 28. Kaya, İ. and Demirelli, K., (2000). Determination of Theremodynamic Proporties of Poly [2-(3-Pheny)-3-Methyl(Cylobutyl)-2-Hydroxyethyl Methacrylate] and Its Copolymers Using Inverse Gas Chromeatography. Polymer, 41: 2855–2863.
  • 29. Di Paola-Baranyi, G. and Guillet, J.E., (1978). Estimation of Polymer Solubility Parameters by Gas Chromeatography, Macromolecules, Vol. 11, 228–235.
  • 30. Yazıcı, D.T., Aşkın, A., and Bütün, V., (2008). GC İnvestigation of The Solubility Parameters of Water-Soluble Homopolymers and Doublehydrophilic Diblock Copolymers. Chromatographia, Vol. 67, 741–747.
Year 2018, Volume: 13 Issue: 2, 7 - 23, 22.04.2018

Abstract

References

  • 1. Smidsrod, O. and Guillet, J.E., (1969). Study of Polymer-Solute İnteractions by Gas Chromeatography. Macromolecules, 11(1): 228–235.
  • 2. Temüz, M.M., Coşkun, M. and Açıkses, A., (2006). Determination of Some Thermodynamic Parameters of Poly(Styrene-Graft-Ethyl Methacrylate) Using Invers Gas Chromatography, Journal of Macromolecules Science, Part A: Pure and Applied Chemistry, 43, 609-619.
  • 3. Chen, C.T. and Al Saigh, Z.Y., (1989). Characterization of Semi Crystalline Polymers by IGC I: Poly (Vinylidene Fluoride), Macromolecules, 22, 2974.
  • 4. Corder, J.R. and Young, C.L., (1979). Physicochemical Measurement by Gas Chromatography, Wiley, New York.
  • 5. Al-Saigh, Z.Y., (1996). Inverse Gas Chromatographic Characterization of Polyethylene Oxide Chromatography, Polymer, 40, 25-32.
  • 6. Voelkel, A., Janasj. J., and Garcia-Dominguez, A., (1993). Inverse Gas Chromatography in Characterization of Surfactants: Determination of Binary Parameter, Journal of Chromatography A, Volume: 654, Issue: 1, 12, Pages: 135-141.
  • 7. Etxeberria A., Alfageme J., Uriarte C., and Iruin J.J., (1992). Inverse Gas Chromeatography in The Charecterization of Polymeric Materials. J. of Chromeatography, 607: 227.
  • 8. Braun, J.M. and Guillet, J.E, (1977). Determination of Crystallinity by Gas Chromatography Effect of Gurvilinearity of Retention Ditagrams, Macromolecules, 10, 101.
  • 9. Guillet, J.E. and Purnel, J.H., (1973). Advences in Analytical Chemistry and Instrumentation; Wiley; New York,
  • 10. Reid, C.R., Parusnitz, J.M., and Sherwood, T.K., (1977). The Properties Of Gases and Liquids, Third Ed. Mcgraw-Hill, New York, P.61. 11. Acikses, A., Taskan, G., and Barim, G., (2018). A Study on Copolymer Systems of Styrene With Diethanolamine Side Group and Methyl Methacrylate. Hindawi,Journal of Chemistry. (Baskıda).
  • 12. Jin, X.R., (1987). Gas Chromatography, High Inducation Pres, Shanghai, P. 29.
  • 13. Sanetra, R., Kolarz, B.N., and Wlochowicz, A., (1987). Determination of Thermodynamic Data Fort He Interaction of Aliphatic Alcohols with Poly (Styreneco-Divinyl Benzene) Using Inverse Gas Chromeatography. Polymer, 28: 1753.
  • 14. Mandal, B.M., Bhattacharya, C., and Bhattacharya, S.N., (1989). Thermodynamic Characterization of Binary Polymer Blends by Inverse Gas-Chromatography, Journal of Macromolecular Science-Chemstry, A26: 1, 175-212.
  • 15. Karagöz, M.H., Erge, M.H., and İlter, Z., (2009). Analysis Of Physical And Thermodynamic Properties of Poly(2-Phenyl-1,3-Dioxolane-4-yl-Methyl-Methacrylate-co-Ethyl Methacrylate) Polymer with Inverse Gas Chromatography, Asian Journal of Chemistry, Vol. 21, No. 5, 403.
  • 16. Al-Saigh, Z.Y., (1987). Miscibility and Surface Characterization of a Poly(Vinylidene Fluoride)- Poly(Vinyl Methyl Ketone) Blend by Inverse Gas Chromatography, Polymer, 40: 3479 .
  • 17. Corder, J.R. and Young, C.L., (1979). Physicochemical Measurement by Gas Chromatography, Wiley, New York.
  • 18. Kaya, İ. and Özdemir, E., (1999). Thermodynamic Interactions and Characterization of Poly (İsobornyl Methacrylate) by Inverse Gas Chromatography at Various Temperatures, Polymer, 40, 2405–2410.
  • 19. Ilter, Z., Kaya, I., and Açıkses, A., (2002). Determination of Thermodynamic Properties of Poly [(2-Phenyl-1,3-Dioxolane-4-Yl) Methylmethacrylate], journal of Plymer Engineering, 22,45.
  • 20. Chen, C.T. and Al-Saigh, Z.Y., (1990). Charectrization of Poly (Ethyl-Methacrylat) by Inverse Gas Chromeatography. Polymer, 3, 1170. 21. Reid, C.R., Prausnitz, J.M., and Sherwood, T.K., (1977). The Properties of Gases and Liquids, 3rd Ed., Mcgraw-Hill, New York, P. 61.
  • 22. Guillet, J.E. and Purnel, J.H., (1973). Advences in Analytical Chemistry and Instrumentation Gas Chromatography, New York.
  • 23. Açıkses, A., Aksar, S., (2009). Synthesis, Characterization and Thermodynamic Parameters of Poly(3-Mesityl-2-Oxopropyl Methacrylate), Turkish Journal of Science & Technology Volume 4, No 2, 127-137.
  • 24. İlter, Z., Öncü, İ., Karagöz, M.H., Ercan, S., and Alhanlı, F., (2016). Synthesis, Characterization and Thermodynamic Properties of Two New 1,3-Dioxolane Containing Copolymers, Journal of The Chemical Society of Pakistan, Vol. 38, No. 3.
  • 25. Klein, J. and Jeberien, H.E., (1980). Depence of Thermodynamic Properties of Poly(Ethylene Glicol), Macromolecules Chemistry, 181, 1237.
  • 26. Açıkses, A., Kaya, İ., and Horoz, G., (2006). Synthesis, Charectrization and Thermodynamic Properties of Poly (3-Mesitiltyl–2-Hydroxypropyl Methacrylate), Journal of Applied Polymer Science, Vol. 101, 101-109.
  • 27. Sanetra, R., Kolarz, B.N., and Wlochowicz, A., (1987). Determination of Thermodynamic Data for the Interaction of Aliphatic Alcohols With Poly (Styreneco-Divinyl Benzene) Using Inverse Gas Chromeatography. Polymer, 28: 1753.
  • 28. Kaya, İ. and Demirelli, K., (2000). Determination of Theremodynamic Proporties of Poly [2-(3-Pheny)-3-Methyl(Cylobutyl)-2-Hydroxyethyl Methacrylate] and Its Copolymers Using Inverse Gas Chromeatography. Polymer, 41: 2855–2863.
  • 29. Di Paola-Baranyi, G. and Guillet, J.E., (1978). Estimation of Polymer Solubility Parameters by Gas Chromeatography, Macromolecules, Vol. 11, 228–235.
  • 30. Yazıcı, D.T., Aşkın, A., and Bütün, V., (2008). GC İnvestigation of The Solubility Parameters of Water-Soluble Homopolymers and Doublehydrophilic Diblock Copolymers. Chromatographia, Vol. 67, 741–747.
There are 28 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Chemistry
Authors

Aslışah Açıkses

Mustafa Hamdi Karagöz

Publication Date April 22, 2018
Published in Issue Year 2018 Volume: 13 Issue: 2

Cite

APA Açıkses, A., & Karagöz, M. H. (2018). DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ. Physical Sciences, 13(2), 7-23.
AMA Açıkses A, Karagöz MH. DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ. Physical Sciences. April 2018;13(2):7-23.
Chicago Açıkses, Aslışah, and Mustafa Hamdi Karagöz. “DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ”. Physical Sciences 13, no. 2 (April 2018): 7-23.
EndNote Açıkses A, Karagöz MH (April 1, 2018) DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ. Physical Sciences 13 2 7–23.
IEEE A. Açıkses and M. H. Karagöz, “DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ”, Physical Sciences, vol. 13, no. 2, pp. 7–23, 2018.
ISNAD Açıkses, Aslışah - Karagöz, Mustafa Hamdi. “DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ”. Physical Sciences 13/2 (April 2018), 7-23.
JAMA Açıkses A, Karagöz MH. DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ. Physical Sciences. 2018;13:7–23.
MLA Açıkses, Aslışah and Mustafa Hamdi Karagöz. “DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ”. Physical Sciences, vol. 13, no. 2, 2018, pp. 7-23.
Vancouver Açıkses A, Karagöz MH. DİETANOLAMİN YAN GRUP İHTİVA EDEN METİL METAKRİLAT KOPOLİMERİNİN TERMODİNAMİK ÖZELLİKLERİNİN İNCELENMESİ. Physical Sciences. 2018;13(2):7-23.