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首页> 外文期刊>RSC Advances >A simple one-pot fabrication of silver loaded semi-interpenetrating polymer network (IPN) hydrogels with self-healing and bactericidal abilities
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A simple one-pot fabrication of silver loaded semi-interpenetrating polymer network (IPN) hydrogels with self-healing and bactericidal abilities

机译:一种简单的单罐制造银载的半互穿聚合物网络(IPN)水凝胶,具有自愈和杀菌能力

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In the last decade, there has been a significant increase in the development of self-healing hydrogels. However, in most cases, the synthesized self-healing hydrogels possess no antibacterial properties. Further, the preparation of self-healing hydrogels usually requires sophisticated processes and also involves multiple steps. Herein, we proposed a simple one-pot synthesis of silver loaded semi-IPN hydrogels with self-healing and antibacterial properties. The hydrogels were prepared by physical cross-linking between polyacrylic acid (PAA) and ferric ions (Fe ~(3+) ) and further modified by the interpenetration of gelatin-silver in the networks. In addition, the effect by varying the gelatin concentration was also studied. The mechanical properties of the as-prepared hydrogels reached 0.79 MPa in stress and 920% in strain with the self-healing efficiency of 87.5% (healed at 70 °C for 2 h). As displayed by the SEM images, the incorporated silver chloride nanoparticles (AgCl NPs) in gelatin-free hydrogels were agglomerated. Meanwhile, well-distributed AgCl NPs in the hydrogels were obtained in the presence of gelatin which acts as a stabilizer. Moreover, due to Fe ~(3+) and AgCl NPs, the hydrogels were able to inhibit the growth of bacteria indicated by an inhibition zone (9–9.6 mm) which was examined toward Escherichia coli via the disk-diffusion method.
机译:在过去的十年中,自我治疗水凝胶的发展有显着增加。然而,在大多数情况下,合成的自我愈合水凝胶没有抗菌性质。此外,自愈合水凝胶的制备通常需要复杂的过程,并且还涉及多个步骤。在此,我们提出了一种具有自愈和抗菌性能的银载半IPN水凝胶的简单单壶合成。通过聚丙烯酸(PAA)和铁离子(Fe〜(3+))之间的物理交联制备水凝胶,并通过网络中明胶 - 银的互流进行进一步改性。此外,还研究了通过改变明胶浓度的效果。制备的水凝胶的力学性能达到0.79MPa,应变为920%,自愈效率为87.5%(在70℃下愈合2小时)。如SEM图像所显示的,将GlatiN的水凝胶中的掺入的氯化银纳米粒子(AgCl NPS)附聚。同时,在用作稳定剂的明胶存在下获得水凝胶中的分布良好的AgCl NP。此外,由于Fe〜(3+)和AgCl NPS,水凝胶能够抑制抑制区(9-9.6mm)所示的细菌的生长,所述抑制区(9-9.6mm)通过盘扩散方法检查了大肠杆菌。

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