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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Structure and properties of silk fibroin aerogels prepared by non-alkali degumming process
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Structure and properties of silk fibroin aerogels prepared by non-alkali degumming process

机译:非碱脱胶工艺制备的丝纤维素气凝胶的结构与性能

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摘要

Silk fibroin aerogel generally suffers from weak mechanical properties, which limits its application in the highperformance materials. Hence, we develop a non-alkali urea degumming strategy for the raw silk to improve the mechanical properties of silk fibroin aerogel. The silk fibroin aerogel with a low density of 13.43 +/- 0.77 mg/cm(3) was fabricated successfully via silk fibroin dissolution, dilution and freeze-drying. We systematically analyze the solution properties of silk fibroin prepared via alkali degumming and non-alkali degumming. Meanwhile, the morphology and structure of aerogel are characterized by scanning electron microscopy, X-ray diffraction spectroscopy and Gaussian multi-peaks-fiting technique of infrared spectrum. Moreover, we investigate the effects of non-alkali degumming method on the mechanical properties and thermal stability of aerogels. The results manifest that the non-alkali urea degumming process reduces damage to silk fibroin, leading to the stable three-dimensional skeleton structure of the prepared aerogels. Furthermore, compared with the silk fibroin aerogel prepared by alkali degumming, the silk fibroin aerogel prepared by non-alkali degumming has higher crystallinity and content of beta-sheet structure, resulting in the better mechanical properties and thermal stability. This work may pave the way for the fabrication of silk fibroin aerogel materials with high mechanical properties.
机译:丝素蛋白气凝胶一般遭受弱机械性能,这限制了其在高性能材料中的应用。因此,我们开发了对生丝的非碱性尿素脱胶策略,以改善丝纤维素气凝胶的机械性能。通过丝素蛋白溶解,稀释和冷冻干燥成功制造具有低密度为13.43 +/- 0.77mg / cm(3)的丝素蛋白气凝胶。我们系统地分析通过碱脱胶制备的丝素蛋白的溶液性能和非碱性脱胶。同时,气凝胶的形态和结构是通过扫描电子显微镜,X射线衍射光谱和高斯多峰值拟合技术的红外光谱的特征。此外,我们研究了非碱脱胶方法对气凝胶机械性能和热稳定性的影响。结果表明,非碱尿素脱胶过程减少对丝素蛋白的损伤,导致制备的气凝胶的稳定三维骨架结构。此外,与通过碱脱胶制备的丝纤维素气凝胶相比,通过非碱脱胶制备的丝素蛋白气体具有更高的结晶度和β-片状结构的含量,导致机械性能更好,热稳定性。这项工作可以为具有高机械性能的丝素蛋白气体材料制备方法。

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