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Παπαγεωργίου Γεώργιος

Επίκουρος Καθηγητής Βιομηχανικής Χημείας

Τομέας Βιομηχανικής Χημείας και Χημείας Τροφίμων
Τμήμα Χημείας, Πανεπιστήμιο Ιωαννινων
Τ.Θ. 1186, 45110 Ιωάννινα

E-mailgzpap@cc.uoi.gr

Telephone:+30 2651 008354

FAX:+30 2651 008795

 

Σπουδές

• Διδακτορικό Δίπλωμα στη Χημεία, (Χημεία Πολυμερών), Τμήμα Χημείας, Αριστοτέλειο Πανεπιστήμιο Θεσσαλονίκης, Ελλάδα (2002).

• Μεταπτυχιακό Δίπλωμα Ειδίκευσης στη Χημεία και Τεχνολογία Πολυμερών, Τμήμα Χημείας, Αριστοτέλειο Πανεπιστήμιο Θεσσαλονίκης, Ελλάδα (1998).

• Δίπλωμα Χημικού Μηχανικού, Τμήμα Χημικών Μηχανικών, Αριστοτέλειο Πανεπιστήμιο Θεσσαλονίκης, Ελλάδα (1995).

 

Ερευνητικά ενδιαφέροντα

• Χημεία Πολυμερών και τεχνολογία πολυμερών

(Βιοαποικοδομήσιμα - Βιοσυμβατά πολυμερή – πολυμερή από ανανεώσιμες πηγές πρώτων υλών, συμπολυμερή και μίγματα πολυμερών, πολυμερικά νανοσύνθετα υλικά, ανακύκλωση πολυμερών).

• Θερμική Ανάλυση (Τεχνικές: DSC, PLM, TMA, DTMA, TGA).

• Φαρμακευτική Τεχνολογία.

 

Επιλεγμένες Δημοσιεύσεις

1. Crystallization of poly(butylene-2,6-naphthalate-co-butylene adipate) copolymers: regulating crystal modification of the polymorphic parent homopolymers and biodegradation, G.Z. Papageorgiou, V. Tsanaktsis, D.N. Bikiaris, Crystal Engineering Communications, 2014, 16, 7963-7978.

 

2. Evaluation of polyesters from renewable resources as alternatives to the current fossil-based polymers. Phase transitions of poly(butylene 2,5-furan-dicarboxylate), G.Z. Papageorgiou, V. Tsanaktsis, D.G. Papageorgiou, S. Exarhopoulos, M. Papageorgiou, D.N. Bikiaris, Polymer, 2014, 55, 3846-3858.

 

3. Synthesis of poly(ethylene furandicarboxylate) polyester using monomers derived from  renewable resources: thermal behavior comparison with PET and PEN, G.Z. Papageorgiou, V. Tsanaktsis, D.N. Bikiaris, Physical Chemistry Chemical Physics, 2014, 16, 7946-7958.

 
4. Miscibility and Properties of New Poly(propylene succinate)/Poly(4-vinylphenol) Blends, G.Z. Papageorgiou, I. Grigoriadou, E. Andriotis, D.N. Bikiaris, C. Panayiotou, Industrial and Engineering Chemistry Research, 2013, 52, 11948−11955

 

5. Competitive Crystallization of a Propylene/Ethylene Random Copolymer Filled with a β-Nucleating Agent and Multi-Walled Carbon Nanotubes. Conventional and Ultrafast DSC Study, D.G. Papageorgiou, G.Z. Papageorgiou, E. Zhuravlev, D. Bikiaris, C. Schick, K. Chrissafis, Journal of Physical Chemistry B 2013, 117, 14875−14884.

 

6. Biodegradable poly(ethylene succinate) nanocomposites. Effect of filler type on thermal behaviour and crystallization kinetics, G.Z. Papageorgiou, Z. Terzopoulou, D.S.Achilias, D.N. Bikiaris, M. Kapnisti, D. Gournis, Polymer 2013, 54, 4604-4616.

 

7. Crystallization and Melting of the Biodegradable Polyester Poly(propylene suberate), G.Z. Papageorgiou, C. Panayiotou, Thermochimica Acta, 2011, 523, 187–199.

 

8. Estimation of thermal transitions in poly(ethylene naphthalate): Experiments and modeling using isoconversional methods, G.Z. Papageorgiou, D.S. Achilias, G.P. Karayannidis, Polymer, 2010, 5, 2565-2575

 

9. Recycling of polymers from plastic packaging materials using the dissolution-reprecipitation technique. D.S. Achilias, A Giannoulis, G.Z. Papageorgiou. Polymer Bulletin 2009, 63, 449–465.

 

10. Correlation between chemical and solid state structures and enzymatic hydrolysis in novel biodegradable polyesters. The case of Poly(propylene alkanedicarboxylate)s. D. N. Bikiaris, G.Z. Papageorgiou, D. Giliopoulos, C. A. Stergiou, Macromolecular Bioscience 2008, 8, 728–740.

 

11. Novel Poly(propylene terephthalate-co-succinate) random copolymers: Synthesis, solid structure and enzymatic degradation study, G.Z. Papageorgiou, A.A. Vassiliou, V. D. Karavelidis, A. Koumbis, D. N. Bikiaris, Macromolecules, 2008, 41, 1675-1684.

 

12. Synthesis, cocrystallization and enzymatic degradation of novel Poly(butylene-co-propylene succinate) copolymers, G.Z. Papageorgiou, D.N. Bikiaris, Biomacromolecules, 2007, 8, 2437-2449.

 

13. Effect of physical state and particle size distribution on dissolution enhancement of Nimodipine/PEG solid dispersions prepared by melt mixing and solvent evaporation. G.Z. Papageorgiou, D. Bikiaris, E.Karavas, S. Politis, A. Docoslis, Y. Park, A. Stergiou and E. Georgarakis, The AAPS Journal 2006, 8 (4) E623-631.

 

14. Evaluation of the isoconversional approach to estimating the Hoffman-Lauritzen parameters from the overall rates of non-isothermal crystallization of polymers, D.S. Achilias, G.Z. Papageorgiou, and G.P. Karayannidis, Macromolecular Chemistry and Physics, 2005, 206, 1511-1519.

 

15. Multiple melting behaviour of poly(ethylene-co-butylene naphthalene-2,6-dicarboxylate)s. G.Z. Papageorgiou, GP Karayannidis, Polymer, 1999, 5325-5332.

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