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Bioinspired Fabrication of Polyurethane/Regenerated Silk Fibroin Composite Fibres with Tubuliform Silk-Like Flat Stress–Strain Behaviour

机译:聚氨酯/再生丝素蛋白复合纤维的生物启发性制备具有管状管状的平应力-应变行为

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摘要

Tubuliform silk is one of the seven different types of spider silks, which is well known for its unique tensile behaviour with Flat Tensile Stress–Strain (FTSS) curve. It is found that anisotropic microstructure of β-sheets is responsible for this property. In recent years, bioinspired approaches to engineer fibres supported by modern manufacturing systems have been attracting considerable interest. The present paper aims to investigate a strategy to biomimic the FTSS behaviour of tubuliform silk in synthetic polymer composite fibres by blending polyurethane (PU) and regenerated silk fibroin (RSF) at different ratios. Wet spinning of composite fibres results in the reconstruction of β-sheets in the synthetic fibre matrix. PU/RSF composite fibre at a ratio of 75/25 produce a tensile curve with FTSS characteristics. Secondary structural changes in RSF and interchain directions of β-sheets within the fibre are studied using Fourier Transform Infra-red (FTIR) spectroscopy and Transmission Electron Microscopy (TEM), respectively. Interestingly, results of TEM patterns confirm transverse anisotropic properties of RSF β-sheets. The composite fibres also display tuneable mechanical properties with respect to RSF contents.
机译:管状管状丝是七种不同类型的蜘蛛丝之一,以其独特的拉伸性能和平坦的拉伸应力-应变(FTSS)曲线而闻名。已经发现,β-片层的各向异性微观结构是造成这种性质的原因。近年来,受到现代制造系统支持的工程化纤维的生物启发方法引起了极大的兴趣。本文旨在研究一种策略,通过混合不同比例的聚氨酯(PU)和再生丝素蛋白(RSF)来模仿合成聚合物复合纤维中微管状丝的FTSS行为。复合纤维的湿纺导致合成纤维基质中的β-折叠层重建。比例为75/25的PU / RSF复合纤维会产生具有FTSS特性的拉伸曲线。分别使用傅里叶变换红外(FTIR)光谱和透射电子显微镜(TEM)研究了纤维内β-折叠的RSF和链间方向的二级结构变化。有趣的是,TEM图的结果证实了RSFβ-片材的横向各向异性。复合纤维还显示出相对于RSF含量可调节的机械性能。

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