首页> 外文期刊>Reactive & Functional Polymers >Insight into (alkyl)methacrylate-based copolymer/sepiolite nanocomposite cryogels containing amino and sulfonic acid groups: Optimization of network properties and elasticity via cryogelation process
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Insight into (alkyl)methacrylate-based copolymer/sepiolite nanocomposite cryogels containing amino and sulfonic acid groups: Optimization of network properties and elasticity via cryogelation process

机译:含有氨基和磺酸基的(烷基)甲基丙烯酸酯的共聚物/海泡石纳米复合材料含有氨基和磺酸基团的纳米复合材料:通过冷冻胶水过程优化网络性质和弹性

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摘要

(Alkyl)methacrylate-based copolymer/sepiolite nanocomposite gels containing amino and sulfonic acid groups have been prepared via (cryo) gelation of N,N-dimethylaminoethyl methacrylate (DMAEMA) and 2-acrylamido2-methyl-propanosulfonic acid (AMPS) in the presence of fibrous clay mineral sepiolite (SEP). The morphology, thermal stability, compression performance, and swelling behavior of nanocomposite gels were systematically studied with various SEP contents. X-ray diffractometry results indicated that SEP had been participated in (cryo)gelation, and the resulting thermal stability and surface morphology were improved by the addition of inorganic clay SEP. Owing to dispersion of SEP, the prepared nanocomposite cryogels exhibited dramatic improvements on their elasticity while low water absorption capacity was maintained. The presence of low amount of SEP significantly enhanced the mechanical strength and the cross-link density of DMAEMA-based nano composite gels due to its fibrous morphology and crystalline structure acting as cross-links. Addition of 0.4% (w/v) SEP led to five-fold increase in the compressive modulus of nanocomposite cryogels. As SEP concentration in the feed was increased from 0 to 2.40% (w/v), the effective cross-link density in the nanocomposite matrix increased continuously from 2.84 to 22.9 x 10(3) mol/m(3). The prepared nanocomposite gels showed enhanced swelling response and on-off switching characteristics in aqueous KBr solutions. The parameters of equilibrium swelling, initial swelling rate, diffusional exponent, and diffusion coefficient were evaluated and the swelling kinetics of the nanocomposite gels in aqueous KBr solution followed the pseudo second order model. Since DMAEMA and inorganic clay SEP were effectively combined in a nanocomposite network, the obtained results would expand the range of responsive properties and related industrial applications available to DMAEMA and SEP individually.
机译:(烷基)含有氨基和磺酸基团的基于甲基丙烯酸酯的共聚物/海泡石纳米复合凝胶已通过(DMAEMA)和2-丙基酰胺2-甲基 - 丙磺酸(AMPS)在存在下制备纤维粘土矿物海泡石(SEP)。用各种SEP含量,系统地研究了纳米复合凝胶的形态,热稳定性,压缩性能和溶胀行为。 X射线衍射测定结果表明,SEP已参与(Cryo)凝胶化,通过添加无机粘土SEP改善了所得的热稳定性和表面形态。由于SEP的分散,所制备的纳米复合多晶硅对它们的弹性显着改善,而保持低吸水能力。由于其纤维形态和结晶结构作用为交叉链路,碱性碱性碱性含量低显着增强了DMAEMA的纳米复合凝胶的机械强度和交联密度。添加0.4%(w / v)SEP导致纳米复合多胶凝胶囊的压缩模量增加至五倍。由于进料中的SEP浓度增加到2.40%(W / V),纳米复合材料基质中的有效交联密度从2.84到22.9×10(3)mol / m(3)增加。制备的纳米复合凝胶显示出含水KBR水溶液中增强的溶胀响应和接通开关特性。评价平衡膨胀,初始膨胀率,扩散指数和扩散系数的参数,并在KBR溶液中纳米复合凝胶的肿胀动力学跟随伪二阶模型。由于DMAEMA和无机粘土SEP在纳米复合网中有效地组合,所以得到的结果将扩大DMAEMA和SEP可用的响应性和相关工业应用的范围。

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