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Enhanced Mechanical Properties by Ionomeric Complexation in Interpenetrating Network Hydrogels of Hydrolyzed Poly (N-vinyl Formamide) and Polyacrylamide

机译:通过离聚物络合在水解聚(N-乙烯基甲酰胺)和聚丙烯酰胺的互穿网络水凝胶中通过离聚物络合增强机械性能

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摘要

Tough hydrogels were made by hydrolysis of a neutral interpenetrating network (IPN) of poly (N-vinyl formamide) PNVF and polyacrylamide (PAAm) networks to form an IPN of polyvinylamine (PVAm) and poly (acrylic acid) (PAAc) capable of intermolecular ionic complexation. Single network (SN) PAAm and SN PNVF have similar chemical structures, parameters and physical properties. The hypothesis was that starting with neutral IPN networks of isomeric monomers that hydrolyze to comparable extents under similar conditions would lead to formation of networks with minimal phase separation and maximize potential for charge–charge interactions of the networks. Sequential IPNs of both PNVF/PAAm and PAAm/PNVF were synthesized and were optically transparent, an indication of homogeneity at submicron length scales. Both IPNs were hydrolyzed in base to form PVAm/PAAc and PAAc/PVAm IPNs. These underwent ~5-fold or greater decrease in swelling at intermediate pH values (3–6), consistent with the hypothesis of intermolecular charge complexation, and as hypothesized, the globally neutral, charge-complexed gel states showed substantial increases in failure properties upon compression, including an order of magnitude increases in toughness when compared to their unhydrolyzed states or the swollen states at high or low pH values. There was no loss of mechanical performance upon repeated compression over 95% strain.
机译:通过水解聚(N-乙烯基甲酰胺)PNVF和聚丙烯酰胺(PAAM)网络的中性互持网(IPN)来制备坚硬的水凝胶,以形成能够分子间的聚乙烯胺(PVAM)和聚(丙烯酸)(PAAC)的IPN离子络合。单网(SN)Paam和Sn PNVF具有类似的化学结构,参数和物理性质。假设是从类似条件下水解成可比范围的异构单体的中性IPN网络开始形成具有最小相分离的网络,并最大化网络的电荷相互作用的电位。合成PNVF / PAAM和PAAM / PNVF的顺序IPN并进行光学透明,亚微米长度的均匀性指示。两个IPN都在基础上水解以形成PVAM / PAAC和PAAC / PVAM IPN。在中间pH值(3-6)时,这些〜5倍或更大的减少,与分子间电荷络合的假说一致,并且如假设,全球中性,电荷络合的凝胶状态显示出的失效特性的显着增加压缩,包括在高或低pH值下的透明状态或肿胀状态时韧性增加韧性的阶数增加。在重复压缩超过95%的菌株时,不会损失机械性能。

著录项

  • 期刊名称 Gels
  • 作者单位
  • 年(卷),期 2021(7),3
  • 年度 2021
  • 页码 80
  • 总页数 15
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:水凝胶;互穿网络;离聚物;聚电解质;聚(N-乙烯基甲酰胺);聚乙烯胺;聚乙烯胺;聚(丙烯酸);模量;韧性;

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