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Effective Parameters onto Swelling Capacity of Biosuperabsorbent Based on Acrylonitrile-Sucrose
Corresponding Author(s) : Fatemeh Soleimani
Asian Journal of Chemistry,
Vol. 25 No. 4 (2013): Vol 25 Issue 4
Abstract
After synthesis of a superabsorbent hydrogel based on sucrose and polyacrylonitrile, the effect of reaction variables such as concentration of NaOH and hydrolysis time and temperature were systematically optimized to achieve a hydrogel with swelling capacity as high as possible. Under the optimized conditions, maximum capacity of swelling in distilled water was found to be 610 g/g. Finally, the swelling kinetics of the hydrogels with various particle sizes was also investigated.
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- S. Hua, H. Yang, W. Wang and A. Wang, Appl. Clay Sci., 50, 112 (2010).
- K. Hori, C. Sotozono, J. Hamuro, K. Yamasaki, Y. Kimura, M. Ozeki Y. Tabata and S. Kinoshita, J. Control. Rel., 118, 169 (2007).
- M. Yazdani-Pedram, J. Retuert and R. Quijada, Macromol. Chem. Phys., 201, 923 (2000).
- Y. Sugahara and O. Takahisa, J. Appl. Polym. Sci., 82, 1437 (2001).
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References
F.L. Buchholz and A.T. Graham, Modern Superabsorbent Polymer Technology, New York: Wiley (1997).
I.Y. Galaev and B. Mattiasson, Trends Biotechnol., 17, 335 (1999).
H. He, X. Cao and L.J. Lee, J. Control. Rel., 95, 391 (2004).
D. Kuckling, A. Ritcher and K.F. Arndt, Macromol. Mater. Eng., 288, 144 (2003).
M.E. Byrne, K. Park and N.A. Peppas, Adv. Drug. Deliv. Rev., 54, 149 (2002).
K. Szczubialka, A. Karewicz, L. Moczek, K.Zomerska and M. Nowakowska, e-Polymers, No. 031 (2006).
H.K. Ju, S.Y. Kim and Y.M. Lee, Polymer, 42, 6851 (2001).
N.A. Peppas, P. Bures, W. Leobandung and W. Ichikawa, Eur. J. Pharm. Biopharm., 50, 27 (2000).
O. Hirasa, S. Ito, A. Yamauchi, S. Fujishige and H. Ichijo, Polymer Gels, Fundamentals and Biomedical Application, Plenum Press, New York, p. 247 (1991).
H.K. Ju, S.Y. Kim, S.J. Kim and Y.M. Lee, J. Appl. Polym. Sci., 83, 1128 (2002).
V. Raghavendra, V. Kulkarni, S.M. Setty and B. Sa, Macromolecules, 47, 520 (2010).
H.Y. Zhou, Y.P. Zhang, W.F. Zhang and X. Guang, Carbohydr. Polym., 83, 1643 (2011).
S. Hua, H. Yang, W. Wang and A. Wang, Appl. Clay Sci., 50, 112 (2010).
K. Hori, C. Sotozono, J. Hamuro, K. Yamasaki, Y. Kimura, M. Ozeki Y. Tabata and S. Kinoshita, J. Control. Rel., 118, 169 (2007).
M. Yazdani-Pedram, J. Retuert and R. Quijada, Macromol. Chem. Phys., 201, 923 (2000).
Y. Sugahara and O. Takahisa, J. Appl. Polym. Sci., 82, 1437 (2001).
G.M. Patel and H.C. Trivedi, Eur. Polym. J., 35, 201 (1999).
S. Silong and L. Rahman, J. Appl. Polym. Sci., 76, 516 (2000).
United States Department of Agriculture, US Patent, 3 981 100 (1961).
W.E. Hennink and C.F. van Nostrum, Adv. Drug Del. Rev., 54, 13 (2002).
G.F. Fanta, R.C. Burr and M.W. Doane, ACS Symp. Ser., 187, 195 (1982).
M. Yamaguchi, H. Watamoto and M. Sakamoto, Carbohydr. Polym., 9, 15 (1988).