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首页> 外文期刊>Current Directions in Biomedical Engineering >Rheological analysis of hybrid hydrogels during polymerization processes
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Rheological analysis of hybrid hydrogels during polymerization processes

机译:杂化水凝胶在聚合过程中的流变学分析

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Development of new implant coatings with temperature-controlled drug release to treat infections after device implantation can be triggered by highly elastic hydrogels with adequate stability and adhesive strength in the swollen state. By using an ionic liquid (IL [ViPrIm]+[Br]?) as additive to N-isopropylacrylamide (NIPAAm) unique effects on volumetric changes and mechanical properties as well as thermoresponsive drug release of the obtained hybrid hydrogels were observed. In this context, rheological measurements allow the monitoring of gelation processes as well as chemical, mechanical, and thermal treatments and effects of additives. Hybrid hydrogels of pNIPAAm and poly (ionic liquid) (PIL) were prepared by radical emulsion polymerization with N,N′-methylenebis(acrylamide) as 3D crosslinking agent. By varying monomer, initiator and crosslinker amounts the multi-compound system during polymerization was monitored by oscillatory time sweep experiments. The time dependence of the storage modulus (G′) and the loss modulus (G″) was measured, whereby the intersection of G′ and G″ indicates the sol-gel transition. Viscoelastic behavior and complex viscosity of crosslinked and non-crosslinked hydrogels were obtained. Within material characterization rheology can be used to determine process capability and optimal working conditions. For biomedical applications complete hydrogelation inter-connecting all compounds can be received providing the possibility to process mechanically stable, swellable implant coatings or wound closures.
机译:具有弹性的水凝胶具有足够的稳定性和在肿胀状态下的粘合强度,可以触发新的具有温度控制的药物释放的植入物涂层的开发,以治疗装置植入后的感染。通过使用离子液体(IL [ViPrIm] + [Br] 3)作为N-异丙基丙烯酰胺(NIPAAm)的添加剂,观察到对所得杂化水凝胶的体积变化和机械性能以及热响应性药物释放的独特影响。在这种情况下,流变学测量可以监测胶凝过程以及化学,机械和热处理以及添加剂的作用。通过N,N'-亚甲基双(丙烯酰胺)作为3D交联剂的自由基乳液聚合制备了pNIPAAm和聚(离子液体)(PIL)的杂化水凝胶。通过改变单体,引发剂和交联剂的量,通过振荡时间扫描实验监测聚合过程中的多化合物体系。测量了储能模量(G′)和损耗模量(G″)的时间依赖性,其中G′和G″的交点表示溶胶-凝胶转变。获得了交联和非交联水凝胶的粘弹性行为和复数粘度。在材料表征中,流变学可用于确定工艺能力和最佳工作条件。对于生物医学应用,可以接受将所有化合物相互连接的完整水凝胶,从而可以处理机械稳定,可膨胀的植入物涂层或伤口闭合物。

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