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High-Performance Soy Protein Isolate-Based Film Synergistically Enhanced by Waterborne Epoxy and Mussel-Inspired Poly(dopamine)-Decorated Silk Fiber

机译:水性环氧树脂和贻贝启发的聚多巴胺装饰丝纤维协同增强的高性能大豆分离蛋白基膜

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摘要

It remains a great challenge to fabricate bio-based soy protein isolate (SPI) composite film with both favorable water resistance and excellent mechanical performance. In this study, waterborne epoxy emulsions (WEU), which are low-cost epoxy crosslinkers, together with mussel-inspired dopamine-decorated silk fiber (PSF), were used to synergistically improve the water resistance and mechanical properties of SPI-based film. A stable crosslinking network was generated in SPI-based films via multiple physical and chemical combinations of WEU, PSF, and soy protein matrixes, and was confirmed by attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectroscopy, X-ray diffraction (XRD), and solid state C nuclear magnetic resonance ( C NMR). As expected, remarkable improvement in both water resistance and Young’s modulus (up to 370%) was simultaneously achieved in SPI-based film. The fabricated SPI-based film also exhibited favorable thermostability. This study could provide a simple and environmentally friendly approach to fabricate high-performance SPI-based film composites in food packaging, food preservation, and additive carrier fields.
机译:制造具有良好的耐水性和优异的机械性能的生物基大豆分离蛋白(SPI)复合膜仍然是一个巨大的挑战。在这项研究中,作为低成本环氧交联剂的水性环氧乳液(WEU)与贻贝启发的多巴胺修饰的丝纤维(PSF)一起用于协同改善SPI基薄膜的耐水性和机械性能。通过WEU,PSF和大豆蛋白基质的多种物理和化学组合,在SPI基薄膜中产生了稳定的交联网络,并通过衰减全反射-傅立叶变换红外(ATR-FTIR)光谱,X射线衍射( XRD)和固态C核磁共振(C NMR)。正如预期的那样,基于SPI的薄膜同时实现了耐水性和杨氏模量(高达370%)的显着改善。所制造的基于SPI的膜还表现出有利的热稳定性。这项研究可以提供一种简单且环保的方法来制造食品包装,食品保鲜和添加剂载体领域中基于SPI的高性能薄膜复合材料。

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