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Bi-functional silica nanoparticles for simultaneous enhancement of mechanical strength and swelling capacity of hydrogels

机译:双官能二氧化硅纳米粒子,用于同时提高水凝胶的机械强度和溶胀容量

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摘要

A combination of strong load-bearing capacity and high swelling degree is desired in hydrogels for many applications including drug delivery, tissue engineering, and biomedical engineering. However, a compromising relationship exists between these two most important characteristics of hydrogels. Improving both of these important properties simultaneously in a single hydrogel material is still beyond the satisfactory limit. Herein, we report a novel approach to address this problem by introducing a silica-based bi-functional 3D crosslinker. Our bi-functional silica nanoparticles (BF-Si NPs) possess amine groups that are able to offer pseudo-crosslinking effects induced by inter-cohesive bonding, and acrylate groups that can form conventional covalent crosslinking in the same hydrogel. We fabricated polyacrylic acid (PAc-Si) and polyacrylamide (PAm-Si) hydrogels using our BF-Si NPs via free radical polymerization to demonstrate this concept. Incorporation of the BF-Si crosslinkers into the hydrogels has resulted in a large enhancement in the mechanical properties compared to conventional hydrogel crosslinked with N,N '-methylene bisacrylamide (MBA). For instance, tensile strength and the toughness increased by more than 6 times and 10 times, respectively, upon replacing MBA with BF-Si in polyacrylamide hydrogel. Moreover, the hydrogels crosslinked with BF-Si exhibited a remarkably elevated level of swelling capacity in the aqueous medium. Our facile yet smart strategy of employing the 3D bi-functional crosslinker for combining high swelling degree and strong mechanical properties in the same hydrogels can be extended to the fabrication of many similar acrylate or vinyl polymer hydrogels.
机译:对于许多应用,包括药物递送,组织工程和生物医学工程,在水凝胶中需要强承载能力和高溶胀度的组合。然而,在这两种最重要的水凝胶特征之间存在折衷的关系。同时在单个水凝胶材料中同时改善这两个重要的性质仍然超出了令人满意的极限。在此,我们通过引入基于二氧化硅的双功能3D交联剂来报告一种解决该问题的新方法。我们的双功能性二氧化硅纳米粒子(BF-Si NPS)具有能够提供由粘结粘结的副交联效应的胺基,以及可以在同一水凝胶中形成常规共价交联的丙烯酸酯基团。我们使用自由基聚合使用我们的BF-Si NPS制造聚丙烯酸(PAC-Si)和聚丙烯酰胺(PAM-Si)水凝胶,以证明这种概念。与用N,N'-亚甲基双式丙烯酰胺(MBA)交联的常规水凝胶相比,将BF-Si交联剂掺入水凝胶中的大增强。例如,在用聚丙烯酰胺水凝胶中用BF-Si替换MBA,抗拉强度和韧性分别增加了6倍和10倍。此外,用BF-Si交联的水凝胶在水性介质中表现出显着升高的溶胀容量。我们的舒适且智能策略用于使用用于组合高溶胀度和相同水凝胶中的强机械性能的3D双功能交联剂可以延伸到许多类似丙烯酸酯或乙烯基聚合物水凝胶的制造。

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