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Mechanical properties of interpenetrating polymer network hydrogels based on hybrid ionically and covalently crosslinked networks

机译:基于杂化离子和共价交联网络的互穿聚合物网络水凝胶的机械性能

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摘要

Hydrogels are polymer networks swollen in water. Because of their soft and wet nature, and their ability to show large volume changes, hydrogels can be useful in many biomedical and actuator applications. In these applications, it is crucial to tune the mechanical and physical properties of a hydrogel in a controllable manner. Here, interpenetrating polymer networks (IPNs) made of a covalently crosslinked network and an ionically crosslinked network were produced to investigate the effective parameters that control the physical and mechanical properties of an IPN hydrogel. Covalently crosslinked polyacrylamide (PAAm) or poly(acrylic acid) (PAA) networks were produced in the presence of alginate (Alg) that was then ionically crosslinked to produce the IPN hydrogels. The effect of ionic crosslinking, degree of covalent crosslinking, AAm : Alg and AA : Alg ratio on the swelling ratio, tensile properties, indentation modulus, and fracture energy of IPN hydrogels was studied. A hollow cylindrical hydrogel with gradient mechanical properties along its length was developed based on the obtained results. The middle section of this hydrogel was designed as a pH triggered artificial muscle, while each end was formulated to be harder, tougher, and insensitive to pH so as to function as a tendonlike material securing the gel muscle to its mechanical supports.
机译:水凝胶是在水中溶胀的聚合物网络。由于水凝胶的柔软和湿润的性质以及显示出大体积变化的能力,因此它们可用于许多生物医学和促动器应用中。在这些应用中,以可控制的方式调节水凝胶的机械和物理性能至关重要。在此,制备了由共价交联网络和离子交联网络制成的互穿聚合物网络(IPN),以研究控制IPN水凝胶的物理和机械性能的有效参数。在藻酸盐(Alg)存在下产生共价交联的聚丙烯酰胺(PAAm)或聚丙烯酸(PAA)网络,然后将其进行离子交联以生成IPN水凝胶。研究了离子交联,共价交联度,AAm:Alg和AA:Alg比对IPN水凝胶的溶胀比,拉伸性能,压痕模量和断裂能的影响。基于获得的结果,开发了沿其长度具有梯度机械性能的中空圆柱形水凝胶。该水凝胶的中间部分设计为pH触发的人造肌肉,而每个末端均被配制为更硬,更坚韧且对pH不敏感,从而起到了像腱一样的作用,将凝胶肌肉固定在其机械支撑上。

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