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Original Articles

Synthesis and characterization of Gum tragacanth, acrylic acid–methacrylic acid based interpenetrating polymer network: its application for controlled release of agrochemicals

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Pages 222-233 | Received 23 Jan 2018, Accepted 18 Mar 2018, Published online: 09 May 2018

References

  • M. Lohakan, T. Jamnongkan, C. Pintavirooj, S. Kaewprom, S. Boonsang. A numerical model for ultrasonic measurements of swelling and mechanical properties of a swollen PVA hydrogel. Ultrasonics, 2013, 50, 782–789.
  • Q. Wang, X. Xie, X. Zhang, J. Zhang, A. Wang. Preparation and swelling properties of pH-sensitive composite hydrogel beads based on chitosan-g-poly (acrylic acid)/vermiculite and sodium alginate for diclofenac controlled release. Int. J. Biol. Macromol, 2010, 46, 356–362.
  • A. K. Bajpai, A. Giri. Water sorption behaviour of highly swelling (carboxy methylcellulose-g-polyacrylamide) hydrogels and release of potassium nitrate as agrochemical. Carbohydr. Polym, 2003, 53, 271–279.
  • X. Cao, S. Lai, L. J. Lee. Design of self-regulated drug delivery device. Biomed. Microdevice, 2001, 3, 109–118.
  • Saruchi , B. S. Kaith, R. Jindal, G. S. Kapur. Enzyme-based green approach for the synthesis of gum tragacanth and acrylic acid cross-linked hydrogel: its utilization in controlled fertilizer release and enhancement of water-holding capacity of soil. Iran. Polym. J, 2013, 22, 561–570.
  • Saruchi , B. S. Kaith, R. Jindal, G. S. Kapur, V. Kumar. Synthesis, characterization and evaluation of Gum tragacanth and acrylic acid hydrogel for sustained calcium chloride release-enhancement of water holding capacity of soil. J. Chin. Adv. Mater. Soc, 2014, 2, 40–52.
  • C. M. Hassan, N. A. Peppas. Intelligent material for controlled release. Washington, DC: ACS Symposium Series. American Chemistry Society, 1999, 54.
  • B. Hui, J. Chen, L. Yang, J. Li, Y. Pei, L. Shi. Preparation of pH and thermo-sensitive hydrogel by two-step grafting of acrylamide and acrylic acid onto preirradiated polyethylene film. J. Radioanal. Nucl. Chem, 2003, 3, 673–677.
  • K. Sharma, V. Kumar, B. S. Kaith, S. Som, V. Kumar, A. Pandey, S. Kalia, H. C. Swart. Synthesis of biodegradable Gum ghatti based poly(methacrylic acid-aniline) conducting IPN hydrogel for controlled release of amoxicillin trihydrate. Ind. Eng. Chem, 2015, 54(7), 1982–1991.
  • K. Sharma, V. Kumar, B. S. Kaith, S. Kumar Som. H. C. Swart. Synthesis, characterization and water retention study of biodegradable Gum ghatti-poly(acrylic acid–aniline) hydrogels. Polym. Degrad. Stab, 2015, 111, 20–31.
  • D. M. W. Anderson, W. Weiping. The tree exudates gum permitted in foodstuffs as emulsifiers, stabilizers and thickeners. Biol. Agric. Hortic, 1985, 2, 329–334.
  • W. Weiping, A. Branwell, C. L. Essex. Tragacanth and karaya. Woodhead Publishing Limited, Cambridge, UK, 2000, ISBN: 1855735016.
  • B. S. Kaith, Saruchi , J. Rajeev, M. S. Bhatti. Screening and RSM optimization for synthesis of a Gum tragacanth–acrylic acid based device for in situ controlled cetirizine dihydrochloride release. Soft Matter, 2012, 8, 2286–2293.
  • Saruchi , B. S. Kaith, R. Jindal, V. Kumar. Biodegradation of Gum tragacanth acrylic acid based hydrogel and its impact on soil fertility. Polym. Degrad. Stab, 2015, 115, 24–31.
  • Saruchi , B. S. Kaith, R. Jindal, G. S. Kapur. Synthesis of Gum tragacanth and acrylic acid based hydrogel: its evaluation, for controlled release of antiulcerative drug pantoprazole sodium. J. Chin. Adv. Mat. Soc, 2014, 2, 110–117.
  • B. S. Kaith, K. S. Saruchi, M. Devi. Synthesis, characterization and evaluation of property profile of hybrid ion exchanger. Adv. Mater. Res, 2014, 856, 64–68.
  • B. Dewangan, N. G. Jadhav, R. A. Kamble, R. N. Jagtap. Synthesis of polymer hydrogels and its applications in drug delivery – a review. Chem. Bus, 2008, 22(7) 25–34.
  • M. Lohakan, T. Jamnongkan, C. Pintavirooj, S. Kaewpirom, S. Boonsang. A numerical model for ultrasonic measurements of swelling and mechanical properties of a swollen PVA hydrogel. Ultrasonics, 2013, 50, 782–789.
  • Saruchi , B. S. Kaith, V. Kumar, R. Jindal. Biodegradation study of enzymatically synthesized interpenetrating polymer network: evaluation of agrochemical release and impact on soil fertility. Biotechnol. Rep, 2016, 9, 74–81.
  • Q. Wang, X. Xie, X. Zhang, J. Zhang, A. Wang. Preparation and swelling properties of pH-sensitive composite hydrogel beads based on chitosan-g-poly (acrylic acid)/vermiculite and sodium alginate for diclofenac controlled release. Int. J. Biol. Macromol, 2010, 46, 356–362.
  • Saruchi , B. S. Kaith, R. Jindal, V. Kumar, M. Bhatti. Optimal response surface design of Gum tragacanth based poly[(acrylic acid)-co-acrylamide] IPN hydrogel for controlled release of antihypertensive drug losartan potassium. RSC Adv, 2014, 4(75), 39822–39829.
  • N. V. Gupta, H. G. Shivkumar. Development of a gastroretentive drug delivery system based on superporous hydrogel. Tropical J. Pharmaceut. Res, 2010, 9, 257–264.
  • Saruchi , B. S. Kaith, R. Jindal, V. Kumar. Adsorption of crude oil from aqueous solution using Gum tragacanth polyacrylic acid based hydrogel. Pet. Sci. Technol, 2015, 33(3), 278–286.
  • A. S. Giroto, G. G. F. Guimaraes, M. Foschini, C. Ribeiro. Role of slow release nanocomposite fertilizers on nitrogen and phosphate availability in soil. Sci. Rep, 2017,7, 1–11.

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