THERMAL SCIENCE
International Scientific Journal
DETERMINATION OF GLASS TRANSITION TEMPERATURE AND SURFACE PROPERTIES OF NOVEL CHALCONE MODIFIED POLY (STYRENE) BASED POLYMER
ABSTRACT
The novel chalcone modified poly (styrene) based polymer (PVBC-DMAC) has been prepared and characterized. By using the inverse gas chromatography (IGC) method, we determined glass transition temperature and surface properties of PVBC-DMAC. The obtained glass transition temperature, Tg, is a good agree with the one obtained by differential scanning calorimetry (DSC). Also considering some isomeric alcohol and acetate solvents in the temperature range from 303.2 K to 353.2 K, we investigated the polymer selectivity. The parameters KA (acidic) and KD (basic) of the PVBC-DMAC surface were calculated. The obtained KA,KD values reflected that PVBC-DMAC surface has a basic character.
KEYWORDS
PAPER SUBMITTED: 2018-09-12
PAPER REVISED: 2018-10-27
PAPER ACCEPTED: 2018-11-26
PUBLISHED ONLINE: 2018-12-16
THERMAL SCIENCE YEAR
2019, VOLUME
23, ISSUE
Supplement 1, PAGES [S193 - S202]
- Reichmanis, E., et al., Radiation Chemistry of Polimeric Materials, Polym. Int., 48 (1999), pp. 1053-1059
- Tazuke, S., in: Developments in Polymer Photochemistry v.3, Applied Science Publishers, London, 1982
- Sakai, Y., et al., Synthesis and Properties of a Second‐order Nonlinear Optical Side‐chain Polyimide, Journal of Polymer Science: Part A: Polymer Chemistry, 37 (1999), pp. 1321-1329
- Perny, S., et al., Molecular Orientation and Liquid Crystal Alignment Properties of New Cinnamate-based Photocrosslinkable Polymers, Liquid Crystals, 27 (2000), 3, pp. 341-348
- Ohe, Y., et al., Application of a Novel Photopolymer to a Holographic Head-up Display, Polymer Advanced Technologies, 10 (1999), 9, pp. 544-553
- Erddalane, A., et al., Efficiency and Excited State Processes in a Three‐Component System, Based on Thioxanthene Derived Dye/Amine/Additive, Usable in Photopolymer Plates, Journal of Polymer Science: Part A: Polymer Chemistry, 34 (1996), 4, pp. 633-642
- Price, G. J., et al., Measurement of Solubility Parameters by Gas-liquid Chromatrography, Journal of Chromatography A, 369 (1986), pp. 273-280
- Eser, H., Tihminlioglu, F., Solubility and Diffusivity of Solvents and Non-solvents in (polymethylmethacrylate-co butyl methacrylate), Fluid Phase Equilibria, 237 (2005), 1-2, pp. 68-76
- Voelkel, A. B., et al., Inverse Gas Chromatography as a Source of Physiochemical data, Journal of Chromatography A, 1216 (2009), 10, pp. 1551-1566
- Kołodziejek, J., et al., Characterization of Hybrid Materials by Means of Inverse Gas Chromatography and Chemometrics, Journal of Pharmaceutical Sciences, 102 (2013), 5, pp. 1524-1531
- Belgacem, M. N., et al., Surface Characterization of Cellulose Fibres by XPS and Inverse Gas Chromatography, Cellulose, 2 (1995), 3, pp. 145-157
- Purnell, J., Advances in Analytical Chemistry and Instrumentation, Gas Chromatography, John Wiley and Sons. Inc., New York, 1973
- Sakar, D., et al., Determination of Transition Points and Thermodynamic Interaction Parameters of poly(2,6-dimethyl-1,4-phenylene oxide), Plastics, Rubber and Composites, 37 (2008), 5-6, pp. 276-280
- Purnell, J. H., New Developments in Gas Chromatography, Wiley, 1973
- Al-Saigh, Z.Y., Munk, P., Study of Polymer-Polymer Interaction Coefficients in Polymer Blends Using Inverse Gas Chromatography, Macromolecules, 17 (1984), 4, pp. 803-809
- Adamska, K., Voelkel, A., Hansen Solubility Parameters for Polyethylene Glycols by Inverse Gas Chromatography, Journal of Chromatography A, 1132 (2006), 1-2, pp. 260-267
- Sesigür, F., et al., Thermodynamical Characterization of poly (ethylene glycol) and Tosylate Functionalized poly(ethylene glycol) Interaction with Some Nonpolar and Polar Solvents via Inverse Gas Chromatography, Optoelectronics and Advanced Materials-Rapid Communications, 10 (2016), 10, pp. 97-101
- Mukhopadhyay, P., Schreiber, HP., Aspects of Acid-base Interactions and Use of Inverse Gas Chromatography, Colloids and Surfaces A: Physicochemical and Engineering Aspect, 100 (1995), pp. 47-71
- Sun, C., Berg, JC., A Review of the Different Techniques for Solid Surface Acid-base Characterization, Advances in Colloid and Interface Science, 105 (2003), 1-3, pp.151-175
- Nastasovic, A. B., Onjia, A. E., Determination of Glass Temperature of Polymers by Inverse Gas Chromatography, Journal of Chromatography A, 1195 (2008), 1-2, pp. 1-15
- Papadopoulou, S.K., et al., Surface Characterization of poly(2,2,3,3,3-pentafluoropropyl methacrylate) by Inverse Gas Chromatography and Contact Angle Measurements, European Polymer Journal, 46 (2010), 2, pp. 202-208
- Conder, J.R., Young, C. L., Physicochemical Measurement by Gas Chromatography, 1st edition, John Wiley and Sons., Ltd, Inc., New York, 1979
- Kiselev, A. V., Non-Specific and Specific Interactions of Molecules of Different Electronic Structures with Solid Surfaces, Discussions of the Faraday Society,40 (1965), pp. 205-218
- Dorris, G. M., Gray, D. G., Adsorption of n-Alkanes at zero Surface Coverage on Cellulose Paper and Wood Fibers, Journal of Colloid and Interface Science, 77 (1980), 2, pp. 353-362
- Hamieh, T.; Schultz, J. New approach to characterise physicochemical properties of solid substrates by inverse gas chromatography at infinite dilution: I. Some new methods to determine the surface areas of some molecules adsorbed on solid surfaces. J. Chromatogr. A, 969 (2002), pp.17-25
- Kamdem, D. P., et al., Inverse Gas Chromatography Characterization of Birch Wood Meal, Langmuir, 9 (1993), 11, pp. 3039-3044
- Riddle, F. L., Fowkes F. M., Spectral shifts in acid-base chemistry 1. van der Waals contributions to acceptor numbers, Journal of the American Chemical Society, 112 (1990), pp. 3259-3264
- Santos, J. M. R. C. A., Guthrie, J. T., Analysis of Interactions in Multicomponent Polymeric Systems: the Key-Role of Inverse Gas Chromatography, Materials Science and Engineering: R: Reports, 50 (2005), 3, pp. 79-107
- Santos, J. M. R. C. A., Guthrie, J. T., Study of a Core-Shell Type Impact Modifier by Inverse Gas Chromatography, Journal of Chromatography A, 1070 (2005), 1-2, 1070, pp. 147-154
- Korkmaz, B., et al., The Synthesis and Dielectric Characterization of Liquid Crystalline Hydrogen Bonded Complex of 3-(4-(dimethyl amino) phenyl)-1-(4-hydroxyphenyl) prop-2-en-1-one with 8-(4-cyanobiphenyl-4′-oxy) octan-1-ol, Journal of Molecular Liquids, 266 (2018), pp.132-138
- Lavoie, A., Guillet, J., Estimation of Glass Transition Temperatures from Gas Chromatographic Studies on Polymers, Rubber Chemistry and Technology, 46 (1973), 1, pp. 1-6
- Cakar, F., Cankurtaran, O., Determination of secondary transitions and thermodynamic interaction parameters of poly (ether imide) by inverse gas chromatography. Polym Bull. 55 (2005), pp. 95-104.
- Yazici, O., Surface Characteristics and Physicochemical Properties of Polystyrene-b-Poly(Acrylic Acid) Determined by Inverse Gas Chromatography. Chromatographia, 79 (2016), pp. 355-362.
- Eken Korkut, S., Yazici, O., Cakar, F., Surface and Thermodynamic Characterizations and Secondary Transition of Novel Phthalocyanine Glass, Journal of Chemical and Engineering Data, 63 (2018), pp.1146-1153.
- Lavoie, A., Guillet, J., Estimation of Glass Transition on Temperatures from Gas Chromatographic Studies on Polymers, Macromolecules, 2 (1969), 4, pp. 443-446.