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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Development and characterisation of an agar--polyvinyl alcohol blend hydrogel.
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Development and characterisation of an agar--polyvinyl alcohol blend hydrogel.

机译:琼脂-聚乙烯醇共混水凝胶的开发和表征

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Numerous authors have reported on hydrogel technologies providing products suitable for applications in biomedical, personal care as well as in nano-sensor applications. Hydrogels fabricated from single polymers have been extensively investigated. However, in many cases a single polymer alone cannot meet divergent demands in terms of both properties and performance. In this work, hydrogels were prepared by physically blending the natural polymer agar with polyvinyl alcohol in varying ratios to produce a new biosynthetic polymer applicable for a variety of purposes. Hydrogen bonding was observed to take place between the polyvinyl alcohol and the agar molecules in the composite materials leading to changes in the thermal, mechanical and swelling characteristics of the composite hydrogels. The composite hydrogels exhibited a slightly higher melting temperature than pure agar (116.81 degrees C). Irreversible compressive damage was found to occur at lower strain levels during compression testing of the dehydrated samples consisting of higher PVOH concentrations. Rheological analysis of hydrated sample revealed G' values of between 5000 and 10,000 Pa for the composite blends, with gels containing higher PVOH percentages exhibiting poorer mechanical strength.
机译:许多作者报道了水凝胶技术,这些技术提供了适用于生物医学,个人护理以及纳米传感器应用的产品。由单一聚合物制成的水凝胶已被广泛研究。然而,在许多情况下,单独的一种聚合物不能就性质和性能满足不同的要求。在这项工作中,通过将天然聚合物琼脂与聚乙烯醇以不同比例进行物理混合以制备出可用于多种目的的新型生物合成聚合物,从而制备了水凝胶。观察到在复合材料中聚乙烯醇和琼脂分子之间发生氢键结合,从而导致复合水凝胶的热,机械和溶胀特性发生变化。复合水凝胶的熔化温度比纯琼脂(116.81摄氏度)略高。在由较高PVOH浓度组成的脱水样品的压缩测试期间,发现在较低的应变水平下会发生不可逆的压缩损伤。水合样品的流变学分析表明,复合共混物的G'值在5000和10,000 Pa之间,其中含有较高PVOH百分比的凝胶显示出较差的机械强度。

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