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Electrospun Nanofibrous Materials as Stimuli-Responsive Polymerized Hydrogels

机译:Electrome纳米纤维材料作为刺激反应聚合水凝胶

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Stimuli-responsive polymerized hydrogels represent a promising class of materials for biomedical and other applications such as muscle-type sensors/ actuators due to substantial change in dimensions or shape in response to minute change in their environment, resemblance of soft biological tissues, ability to operate in wet environments, and chemical and physical tailorability. However, despite extensive fundamental research, slow response rate and poor mechanical robustness and durability of gels remain the major unresolved barriers for wider application of these materials. Nanostructured responsive polymer gels based on continuous electrospun nanofilaments are expected to have fast response and enhanced strength, modulus, and toughness, thus resolving both main current shortcomings. In this article, poly(vinyl alcohol)-poly(acrylic acid) and Dextran- poly(acrylic acid) pH-responsive nanofilamentary gels were prepared and compared to bulk gels. In addition to fast response rate, the nanofilamentary gels demonstrated unusual mechanical properties such as cross-over of load vs. length curves obtained at different pH and anisotropy of response.
机译:刺激响应聚合水凝胶代表了一种有望的生物医学和其他应用等应用,例如肌肉型传感器/致动器,由于其环境的微小变化,柔软的生物组织的相似性,操作能力在潮湿的环境中,以及化学和物理素描。然而,尽管具有广泛的基础研究,但慢响应率和机械稳健性和凝胶的耐久性仍然是更广泛应用这些材料的主要未解决的障碍。基于连续电纺纳丝的纳米结构响应性聚合物凝胶预期具有快速响应和增强的强度,模量和韧性,从而解决主要目前的缺点。在本文中,制备聚(乙烯醇) - 聚(丙烯酸)和葡聚糖 - 聚(丙烯酸)pH-响应纳米丝凝胶,并与散装凝胶相比。除了快速响应速率之外,纳米丝凝胶还表现出不寻常的机械性质,例如在不同pH和反应各向异性下获得的长度曲线。

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