Department of Materials Science and Engineering University of Ioannina School of Engineering
 
 
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PHOTO Μaria Κarampela
Laboratory Teaching Staff
Polymer Materials and Biomedical Technology

EMAIL mariakarab@uoi.gr
PHONE (+30)-265100-7396 (Office)
PHONE (+30)-265100-9027, -28, -29 (Lab)

Academic Titles
Educational & Professional Experience
Teaching Activities in the Department
Research Interests
Representative Publications

Academic Titles
  • Diploma of Chemistry, Aristotle University of Thessaloniki (2003)
  • M.Sc. of Chemistry with an emphasis «Polymer Chemistry and Technology» Aristotle University of Thessaloniki (2005)
  • Ph.D. of Chemistry, Aristotle University of Thessaloniki (2010)
Academic, Research & Industrial Experience
  • Laboratory Teaching Staff of “Polymer Materials and Biomedical Technology”, Department of Materials Science and Engineering, University of Ioannina (2016 – Today)
  • Lecturer (Fixed Term), Hellenic Army Academy (2011-2018)
  • Laboratory Lecturer (Fixed Term), Technological Educational Institute of Athens, Department of Aesthetics and Cosmetic Science (2015 –2016)
  • Chemist / Researcher, R&D at D.M.P. Manufacturer of Dental Materials Ltd, (2011 – 2013)
  • Research Associate, Laboratory of Polymer Chemistry and Technology, Department of Chemistry, Aristotle University of Thessaloniki. (2003-2010)
Teaching Activities in the Department
  • Materials Laboratory V – Polymer Materials.
  • Polymer Materials – Special Issues.
  • Polymer Materials and Related materials of Controlled.
  • Petroleum, Petrochemicals and Lubricants.
Research Interests
  • Synthesis, characterization, study properties (physical / chemical / mechanical / thermal properties, etc., modification and improvement of their final properties) of polymers, polymer based composite materials, nanomaterials, polymer based biomaterials, dental polymer materials, polymer based materials polymer for biological and pharmaceutical applications. Polymer recycling.
Representative Publications
  • Papadogiannis, F., Batsali, A., Klontzas, M.E., Karabela, M., Georgopoulou, A., Mantalaris, A., Zafeiropoulos, N.E., Chatzinikolaidou, M., Pontikoglou, C. Osteogenic differentiation of bone marrow mesenchymal stem cells on chitosan/gelatin scaffolds: Gene expression profile and mechanical analysis”, Biomedical Materials (Bristol), 2020, 15(6), aba325.
  • Barkoula, N.M., Karabela, M., Zafeiropoulos, N.E., Tsotra, P. “Fast curing versus conventional resins – degradation due to hygrothermal and UV exposure”, Express Polymer Letters, 2020, 14(5), pp. 401-415.
  • Exarchos D., Dalla P., Tragazikis I., Dassios K., Zafeiropoulos N., Karabela M., Crescenzo C., Karatza D., Musmarra D., Chianese S., Matikas Th.,. “Development and Characterization of High Performance Shape Memory Alloy Coatings for Structural Aerospace Applications”. Materials (2018), 11 (5), Article No. 832.
  • Balgis D., Bekas D., Tzachristas G., Zafeiropoulos N., Parlamas A., Karabela M., Paipetis A. “Multi-scaled reinforcement in ternary epoxy composite materials: Dispersion and Electrical Impedance study”. Composites Science and Technology, 153 (2017), 7-17.
  • Koukiotis Ch, Karabela M.M., Sideridou I.D., “Mechanical properties of films of latexes based on copolymers BA/MMA/DAAM and BA/MMA/VEOVA-10/DAAM and the corresponding self-crosslinked copolymers using the adipic acid dihydrazide as crosslinking agent”, Progress in Organic Coatings, 75 (2012), 106-115.
  • Achilias D.S., Karabela M.M., Varkopoulou E.A., Sideridou I.D.. “Cure kinetics study of two epoxy systems with Fourier Tranform Infrared Spectroscopy (FTIR) and Differential Scanning Calorimetry (DSC)”, Journal of Macromolecular Science: Part A: Pure and Applied Chemistry, 49 (2012), 1-9.
  • Karabela M.M., Sideridou I.D.. “Synthesis and study of physical properties of dental light-cured nanocomposites using different amounts of a urethane dimethacrylatetrialkoxysilane coupling agent”, Dental Materials, 27 (2011), 1144-1152.
  • Sideridou I.D., Karabela M.M.. “Sorption of water, ethanol or ethanol/water solutions by light-cured dental dimethacrylate resins.”, Dental Materials, 27 (2011), 1003 - 1010.
  • Karabela M.M., Sideridou I.D.. “Synthesis and study of properties of dental resin composites with different nanosilica particles size.”, Dental Materials, 27 (2011), 825-835.
  • Sideridou I.D., Karabela M.M., Vouvoudi E.Ch.. “Physical properties of current dental nanohybrid and nanofill light-cured resin composites”, Dental Materials 27 (2011),598 - 607.
  • Achilias D.S., Karabela M.M., Sideridou I.D.. “Thermal degradation and isoconversional kinetic analysis of light-cured dimethacrylate copolymers”,Journal of Thermal Analysis and Calorimetry, 99 (2010) 917 - 923.
  • Sideridou I.D., Karabela M.M. “Effect of the amount of 3-methacryloxypropyltrimethoxy-silane coupling agent on physical properties of dental resin nanocomposites”, Dental Materials, 25 (2009), 1315 -1324.
  • Sideridou I.D., Karabela M.M., Spyroudi Ch.S. “Dynamic Mechanical Analysis of a Hybrid and a Nanohybrid Light-cured Dental Resin-composite”, Journal of Biomaterials Science: Polymer Edition,20 (12) (September 2009),1797 - 1808.
  • Sideridou I.D., Karabela M.M., Micheliou Ch.N., Karagiannidis P.G., Logothetidis S.. “Physical properties of a hybrid and a nanohybrid dental light-cured resin composite”, Journal of Biomaterials Science: Polymer Edition,20 (13) (October 2009),1831 - 1844.
  • Karabela M.M., Sideridou I.D.. “Effect of the structure of silane-coupling agent on sorption characteristics of solvents by dental resin-nanocomposites.”, Dental Materials, 24 (2008),1631-1639.
  • Sideridou I.D., Karabela M.M.. “Effect of the Structure of Silane-coupling Agenton Dynamic Mechanical Properties of Dental Resin-Composites”, Journal of Applied Polymer Science, 110 (2008), 507-516.
  • Achilias D.S., Karabela M.M., Sideridou I.D.. “Thermal degradation of light-cured dimethacrylate resins. Part I. Isoconversional kinetic analysis”, Thermochimica Acta, 472 (2008), 74-83.
  • Sideridou I.D., Karabela M.M. “Sorption characteristics of water and ethanol/water solution by light-cured copolymers of 2-hydroxyethyl methacrylate with dental dimethacrylates”, Journal of Applied Polymer Science, 109 (4) (2008), 2503-2512.
  • Sideridou I.D., Karabela M.M., Vouvoudi E.Ch.. “Volumetric dimensional changes of dental light cured dimethacrylate resins after sorption of water or ethanol ”, Dental Materials 24 (8) (2008),1131-1136.
  • Sideridou I.D., Karabela M.M., Vouvoudi E.Ch. “Dynamic thermomechanical properties and sorption of two commercial light cured dental resin composites”, Dental Materials 24 (2008),737-743.
  • Sideridou I.D., Karabela M.M., Vouvoudi E.Ch., Papanastasiou G.E.. “Sorption and desorption parameters of water or ethanol in light-cured dental dimethacrylate resins”, Journal of Applied Polymer Science, 107 (1) (2008), 463-475.
  • Sideridou I.D., Achilias D.S., Karabela M.M. “Sorption kinetics of ethanol/water solution by dimethacrylate-based dental resins and resin composites”, Journal of Biomedical Materials Research Part B, 81Β (1), (2007), 207-218.
  • Sideridou I.D., Karabela M.M., Bikiaris D.N. “Aging studies of light cured dimethacrylate-based dental resins and a resin composite in water or ethanol/water”, Dental Materials 23 (9), (2007), 1142-1149.
  • Sideridou I.D., Achilias D.S., Spyroudi C.S., Karabela M.M.,΄΄Water Sorption Characteristics of Light- cured Dental Resins and Composites Based on Bis-EMA/PCDMA΄΄, Biomaterials 25 (2004), 367-376.
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