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Acrylamide–itaconic acid superabsorbent polymers and superabsorbent polymer/mica nanocomposites
Authors:Daungtawan Foungfung  Siriwan Phattanarudee  Nispa Seetapan  Suda Kiatkamjornwong
Institution:1. Petrochemistry and Polymer Science, Faculty of Science, Chulalongkorn University, Phayathai Road, Bangkok 10330, Thailand;2. Department of Imaging and Printing Technology, Faculty of Science, Chulalongkorn University, Phayathai Road, Bangkok 10330, Thailand;3. National Metal and Materials Technology Center, National Science and Technology Development Agency, 114 Thailand Science Park, Paholyothin Rd, Klong 1, Klong Luang, Pathumthani 12120, Thailand
Abstract:Superabsorbent polymer acrylamide (AM)/itaconic acid (IA) and its nanocomposite were synthesized by redox polymerization in an aqueous solution of both monomers with mica used as an inorganic additive. The influences of IA concentration, mica content, and crosslinker concentration on the water absorption and physical properties of the superabsorbent polymer and its nanocomposite were examined. Water absorbency in artificial urine by the synthesized copolymers, and the gel strength of the superabsorbent copolymers and their nanocomposites, were tested with loads of 0.28 or 0.70 psi. Transmission electron micrographs and X‐ray diffraction confirmed that the polymer chains were successfully intercalated into the silicate layers in the mica. The water absorbency and the artificial urine absorbency of the composite with an AM‐to‐IA mole ratio of 95:5, 0.2% mol N‐MBA, and 5% w/w mica were 748 ± 5 and 76 ± 2 g g?1, respectively, whilst the neat copolymer achieved only 640 ± 7 and 72 ± 2 g g?1 in water and artificial urine, respectively. The viscoelastic behavior suggested that the swollen gel of the nanocomposites exhibited mechanical stability and elasticity. Copyright © 2009 John Wiley & Sons, Ltd.
Keywords:superabsorbent polymer  superabsorbent polymer nanocomposite  mica  water absorbency
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