马来酸作为一种重要的单体,用于合成刺激响应型聚丙烯酸-co-丙烯酰胺-co-马来酸超吸收聚合物。
Maleic acid as an important monomer in synthesis of stimuli-responsive poly(acrylic acid-co-acrylamide-co-maleic acid) superabsorbent polymer.
机构信息
Department of Chemistry, University of Isfahan, P.O. Box 81746-73441, Isfahan, Iran.
出版信息
Sci Rep. 2023 Mar 2;13(1):3511. doi: 10.1038/s41598-023-30558-3.
Poly(acrylic acid-co-acrylamide-co-maleic acid) (p(AA-co-AM-co-MA)) superabsorbent polymer was synthesized from acrylic acid (AA), acrylamide (AM), and maleic acid (MA) via free radical copolymerization. Results showed the presence of maleic acid in structure of superabsorbent has the key and superior role in creating a smart superabsorbent. The structure, morphology, and strength of the superabsorbent were characterized using FT-IR, TGA, SEM, and rheology analysis. The effect of different factors was investigated to determine the ability of water absorbency of the superabsorbent. According to optimized conditions, the water absorbency capacity of the superabsorbent in distilled water (DW) was 1348 g/g and in a solution containing 1.0 wt.% NaCl (SCS) was 106 g/g. The water retention ability of the superabsorbent was also investigated. The kinetic swelling of superabsorbent was identified by Fickian diffusion and Schott's pseudo-second-order model. Furthermore, the reusability of superabsorbent was studied in distilled water and saline solution. The ability of superabsorbent was investigated in simulated urea and glucose solutions, and very good results were obtained. The response ability of the superabsorbent was confirmed by swelling and shrinking behavior against changes of temperature, pH, and ionic strength.
聚丙烯酸-丙烯酰胺-马来酸共聚物(p(AA-co-AM-co-MA))超吸收聚合物是由丙烯酸(AA)、丙烯酰胺(AM)和马来酸(MA)通过自由基共聚合成的。结果表明,结构中超吸收剂中马来酸的存在在创造智能超吸收剂方面起着关键和优越的作用。使用 FT-IR、TGA、SEM 和流变分析对超吸收剂的结构、形态和强度进行了表征。研究了不同因素的影响,以确定超吸收剂的吸水能力。根据优化条件,超吸收剂在去离子水(DW)中的吸水率为 1348 g/g,在含有 1.0 wt.% NaCl(SCS)的溶液中的吸水率为 106 g/g。还研究了超吸收剂的保水能力。通过菲克扩散和肖特准二级模型鉴定了超吸收剂的动力学溶胀。此外,还研究了超吸收剂在去离子水和盐溶液中的重复使用性。超吸收剂在模拟尿素和葡萄糖溶液中的能力进行了研究,得到了非常好的结果。通过超吸收剂的溶胀和收缩行为对温度、pH 值和离子强度变化的响应能力进行了确认。