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Improved flexibility and water resistance of soy protein thermoplastics containing waterborne polyurethane.

机译:改善了水性聚氨酯大豆蛋白热塑性塑料的柔韧性和耐水性。

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To develop biodegradable material with high performance, waterborne polyurethane (WPU) was used to modify soy protein isolate (SPI) with improved flexibility and water resistance. The blend films were successfully prepared by casting the aqueous dispersions of SPI and WPU. The effect of WPU content on the structure and properties of the resulting films was investigated by scanning electron microscopy, light transmittance, dynamic mechanical thermal analysis, tensile tests and water sensitivity measurements. The blend films exhibited fine compatibility, as a result of the strong hydrogen bonding interactions between SPI and WPU. The flexibility and water resistance of the soy protein based films were improved significantly. Moreover, the incorporation of WPU enhanced the mechanical properties of the blend films in water, leading to the applications under wet conditions. The SPI/WPU blend films exhibited much lower cytotoxicity than WPU. This is a simple pathway for preparation of biodegradable films, which have a potential application as biomedical materials.
机译:为了开发高性能的可生物降解材料,使用了水性聚氨酯(WPU)来改善大豆分离蛋白(SPI)的柔韧性和耐水性。通过浇铸SPI和WPU的水分散体成功地制备了共混膜。通过扫描电子显微镜,透光率,动态机械热分析,拉伸试验和水敏感性测量研究了WPU含量对所得膜的结构和性能的影响。由于SPI和WPU之间强烈的氢键相互作用,共混膜表现出良好的相容性。大豆蛋白基薄膜的柔韧性和耐水性显着提高。而且,WPU的加入增强了共混膜在水中的机械性能,从而导致在潮湿条件下的应用。 SPI / WPU混合膜的细胞毒性比WPU低得多。这是制备可生物降解膜的简单途径,其可作为生物医学材料潜在应用。

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