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Acrylamide-itaconic acid superabsorbent polymers and superabsorbent polymer/mica nanocomposites

机译:丙烯酰胺-衣康酸超吸收性聚合物和超吸收性聚合物/云母纳米复合材料

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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~(-1), respectively, whilst the neat copolymer achieved only 640±7 and 72±2 g~(-1) in water and artificial urine, respectively. The viscoelastic behavior suggested that the swollen gel of the nanocomposites exhibited mechanical stability and elasticity.
机译:在两种单体的水溶液中,以云母作为无机添加剂,通过氧化还原聚合反应合成了超吸收性聚合物丙烯酰胺(AM)/衣康酸(IA)及其纳米复合材料。研究了IA浓度,云母含量和交联剂浓度对超吸收性聚合物及其纳米复合材料的吸水率和物理性能的影响。在0.28或0.70 psi的负荷下测试了合成共聚物在人造尿液中的吸水率,以及超吸收性共聚物及其纳米复合材料的凝胶强度。透射电子显微照片和X射线衍射证实,聚合物链成功地插入了云母中的硅酸盐层中。 AM / IA摩尔比为95:5,N-MBA为0.2%mol,云母为5%w / w的复合材料的吸水率和人工尿液吸收率分别为748±5和76±2 g〜( -1),而纯共聚物在水和人工尿液中分别仅达到640±7和72±2 g〜(-1)。粘弹性行为表明纳米复合材料的溶胀凝胶表现出机械稳定性和弹性。

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