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Original Articles

Surface Thermodynamics of Poly(caprolactone) Diol by Inverse Gas Chromatography

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Pages 414-425 | Received 19 Feb 2015, Accepted 22 Mar 2015, Published online: 06 Jul 2015

REFERENCES

  • Mohammadi-Jam, S., and K. E. Waters. 2014. Inverse gas chromatography applications: A review. Adv. Colloid Interface Sci. 212: 21–44.
  • Kumar, B. P., S. Ramanaiah, T. M. Reddy, and K. S. Reddy. 2014. Surface characterization of cellulose acetate propionate by inverse gas chromatography. Polym. Bull. 71: 125–132.
  • Ramanaiah, S., P. R. Rani, and K. S. Reddy. 2012. Hansen solubility parameters for the solid surface of cellulose acetate propionate by inverse gas chromatography. J. Macromol. Sci. Part B 51: 2191–2200.
  • Mukhopadhyay, P., and H. P. Schreiber. 1995. Aspects of acid-base interactions and use of inverse gas chromatography. Colloids Surf. A Physicochem. Eng. Asp. 100: 47–71.
  • Santos, J. M. R. C. A., and J. T. Guthrie. 2005. Analysis of interactions in multicomponent polymeric systems: The key-role of inverse gas chromatography. Mater. Sci. Eng. R Rep. 50: 79–107.
  • Reddy, A. S., S. Ramanaiah, and K. S. Reddy. 2013. Hansen solubility parameters of cellulose acetate propionate-poly (caprolactone) diol blend by inverse gas chromatography. Int. J. Polym. Anal. Charact. 18: 172–180.
  • Karde, V., and C. Ghoroi. 2014. Influence of surface modification on wettability and surface energy characteristics of pharmaceutical excipient powders. Int. J. Pharm. 475: 351–363.
  • Shah, U. V., D. Olusanmi, A. S. Narang, M. A. Hussain, J. F. Gamble, M. J. Tobyn, and J. Y. Y. Heng. 2014. Effect of crystal habits on the surface energy and cohesion of crystalline powders. Int. J. Pharm. 472(1–2): 140–147.
  • Ghebre-Sellassie, I. 1989. Pharmaceutical Pelletization Technology. New York: Marcel Dekker, pp. 30–100.
  • Dey, N. S., S. Majumdar, and M. E. B. Rao. 2008. Multiparticulate drug delivery systems for controlled release. Trop. J. Pharm. Res. 7: 1067–1075.
  • Cava, D., R. Gavara, J. M. Lagarón, and A. Voelkel. 2007. Surface characterization of poly(lactic acid) and polycaprolactone by inverse gas chromatography. J. Chromatogr. A 1148(1): 86–91.
  • Reddi Rani, P., S. Ramanaiah, B. Praveen Kumar, and K. S. Reddy. 2013. Lewis acid-base properties of cellulose acetate butyrate-poly(caprolactonediol) blend by inverse gas chromatography. Polym.-Plast. Technol. Eng. 52: 1–7.
  • Reddi Rani, P., S. Ramanaiah, and K. S. Reddy. 2010. Lewis acid-base properties of cellulose acetate butyrate by inverse gas chromatography. Surf. Interface Anal. 43: 683–688.
  • Wu, R., D. Que, and Z. Y. Al-Saigh. 2007. Surface and thermodynamic characterization of conducting polymers by inverse gas chromatography. II. Polyaniline and its blend. J. Chromatogr. A 1146: 93–102.
  • Oledzka, E., and M. Sobczak M. 2012. Polymers in the pharmaceutical applications—Natural and bioactive initiators and catalysts in the synthesis of biodegradable and bioresorbable polyesters and polycarbonates. In Innovations in Biotechnology, ed. E. C. Agbo, pp. 139–160. Rijeka, Croatia: InTech.
  • Vroman, I., and L. Tighzert. 2009. Biodegradable polymers. Materials 2: 307–344.
  • Sarac, A., D. Şakar, O. Cankurtaran, and F. Yılmaz Karaman. 2005. The ratio of crystallinity and thermodynamical interactions of polycaprolactone with some aliphatic esters and aromatic solvents by inverse gas chromatography. Polym. Bull. 53: 349–357.
  • Sreekanth, T. V. M., S. Ramanaiah, P. Reddi Rani, and K. S. Reddy. 2009. Thermodynamic characterization of poly (caprolactonediol) by inverse gas chromatography. Polym. Bull. 63: 547–563.
  • Schultz, J., L. Lavielle, and C. Martin. 1987. The role of the interface in carbon fibre-epoxy composites. J. Adhes. 23: 45–60.
  • Dorris, G. M., and D. G. Gray. 1980. Adsorption of n-alkanes at zero surface coverage on cellulose paper and wood fibers. J. Colloid Interface Sci. 77: 353–362.
  • Fowkes, F. M. 1990. Quantitative characterization of the acid-base properties of solvents, polymers, and inorganic surfaces. J. Adhes. Sci. Technol. 4: 669–691.
  • Guttmann, V. 1978. The Donor-Acceptor Approach to Molecular Interactions. New York: Plenum Press.
  • Hansen, C. M. 2000. Hansen Solubility Parameters: A User’s Handbook. Boca Raton, FL: CRC Press.
  • Voelkel, A., K. Adamska, B. Strzemiecka, and K. Batko. 2008. Determination of Hansen solubility parameters of solid materials by inverse gas chromatography. Acta Chromatogr. 20: 1–14.
  • Karger, B. L., L. R. Snyder, and C. Eon. 1978. Expanded solubility parameter treatment for classification and use of chromatographic solvents and adsorbents. Anal. Chem. 50: 2126–2136.
  • Hansen, C. M., and A. Beerbower. 1971. Solubility parameters. In Encyclopedia of Chemical Technology, 3rd ed. New York: Wiley.
  • Edgar, K. J., C. M. Buchanan, J. S. Debenham, P. A. Rundquist, B. D. Seiler, M. C. Shelton, and D. Tindall. 2001. Advances in cellulose ester performance and application. Prog. Polym. Sci. 26: 1605–1688.

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