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基于阴离子淀粉的杂化冷冻凝胶包埋的ZnO纳米颗粒:用二元羧酸单元调节生物复合材料的弹性和pH功能性。

Anionic starch-based hybrid cryogel-embedded ZnO nanoparticles: tuning the elasticity and pH-functionality of biocomposites with dicarboxylic acid units.

作者信息

Ciftbudak Sena, Orakdogen Nermin

机构信息

Graduate School of Science Engineering and Technology, Department of Chemistry, Istanbul Technical University, Maslak, Istanbul, 34469, Turkey.

Department of Chemistry, Soft Materials Research Laboratory, Istanbul Technical University, Maslak, Istanbul, 34469, Turkey.

出版信息

Soft Matter. 2024 Jun 5;20(22):4434-4455. doi: 10.1039/d4sm00136b.

Abstract

Weakly anionic semi-interpenetrating polymer network (semi-IPN) biocomposites based on starch (ST)-incorporated poly(acrylamide--itaconic acid)/ZnO (ST-PAI/ZnO) were synthesized by a simple one-pot method free radical aqueous polymerization. Hybrid biocomposites exhibited lower equilibrium swelling compared with neat copolymer gel. For both hydrogels and cryogels, swelling followed a decreasing order as copolymer PAI > starch-free PAI/ZnO > ST-PAI/ZnO gels. With the addition of 9% ST and ZnO, the swelling ratio of gels decreased from 898 to 68.3, resulting in a significant increase in elastic modulus. Compared with a fixed amount of ST, biocomposite cryogels exhibited significantly higher modulus than hydrogels. With the addition of 9% ST, the elastic modulus of cryogels reached 22.2 kPa while it was 2.7 kPa for the hydrogels. An equation expressing the effective cross-linking density of semi-IPNs presented by a cubic polynomial as a function of starch was obtained. As pH increased with the presence of dicarboxylic acid units, a gradual increase in swelling occurred at two different pH values. A gradually reproducible swelling change of semi-IPNs was depicted with pH ranging from 2.1 to 11.2. Biocomposite cryogels showed rapid swelling in a buffer solution of pH 11.2 and rapid shrinking in pH 2.1. Salt-induced swelling testing showed that the ability to reduce the degree of swelling and solubility of starch was Br > Cl > NO > SO for anions consistent with the Hofmeister series. Adsorption efficiency for the removal of methyl violet (MV) dye was analyzed using Langmuir, Freundlich, Dubinin-Radushkevich and Temkin isotherm models. The results confirmed that the Langmuir isotherm and pseudo-second-order model are suitable for describing MV adsorption on semi-IPN biocomposites. The synthesized biocomposites with good swelling/deswelling kinetics in different pH-buffer solutions, high saline absorbency, desirable adsorption efficiency, and acceptable pH-dependent swelling reversibility can be considered as smart hybrid materials for the adsorption of the dye in water purification tasks.

摘要

基于淀粉(ST)掺杂的聚(丙烯酰胺 - 衣康酸)/氧化锌(ST - PAI/ZnO)的弱阴离子半互穿聚合物网络(半IPN)生物复合材料通过简单的一锅法自由基水溶液聚合反应合成。与纯共聚物凝胶相比,杂化生物复合材料表现出较低的平衡溶胀率。对于水凝胶和冷冻凝胶,溶胀程度遵循以下递减顺序:共聚物PAI>无淀粉PAI/ZnO>ST - PAI/ZnO凝胶。添加9%的ST和ZnO后,凝胶的溶胀率从898降至68.3,导致弹性模量显著增加。与固定量的ST相比,生物复合冷冻凝胶的模量显著高于水凝胶。添加9%的ST后,冷冻凝胶的弹性模量达到22.2 kPa,而水凝胶的弹性模量为2.7 kPa。得到了一个用三次多项式表示半IPN有效交联密度与淀粉函数关系的方程。由于二羧酸单元的存在,随着pH值升高,在两个不同的pH值下溶胀逐渐增加。描绘了半IPN在pH值为2.1至11.2范围内逐渐可重现的溶胀变化。生物复合冷冻凝胶在pH值为11.2的缓冲溶液中迅速溶胀,在pH值为2.1时迅速收缩。盐诱导溶胀测试表明,对于阴离子,降低淀粉溶胀程度和溶解度的能力顺序为Br>Cl>NO>SO,与霍夫迈斯特序列一致。使用朗缪尔、弗伦德利希、杜比宁 - 拉杜舍维奇和坦金等温线模型分析了去除甲基紫(MV)染料的吸附效率。结果证实,朗缪尔等温线和准二级模型适用于描述MV在半IPN生物复合材料上的吸附。所合成的生物复合材料在不同pH缓冲溶液中具有良好的溶胀/去溶胀动力学、高吸盐性、理想的吸附效率以及可接受的pH依赖性溶胀可逆性,可被视为用于水净化任务中吸附染料的智能杂化材料。

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