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首页> 外文期刊>RSC Advances >Obtaining high mechanical performance silk fibers by feeding purified carbon nanotube/lignosulfonate composite to silkworms
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Obtaining high mechanical performance silk fibers by feeding purified carbon nanotube/lignosulfonate composite to silkworms

机译:通过将纯化的碳纳米管/木质素磺酸盐复合物喂给家蚕以获得高机械性能的蚕丝纤维

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摘要

Silkworm fibers have attracted widespread attention for their superb glossy texture and promising mechanical performance. The mechanical properties can be reinforced with carbon nanofillers, particularly carbon nanotubes (CNTs), depending on the CNT content in the silk fibers. In order to increase the CNT content, lignosulfonate (LGS) was used as a surfactant to ameliorate the CNT solubility, dispersibility, and biocompatibility. The resulting CNT/LGS nano-composite was further processed through an additional purification method to remove excess surfactant and enhance the CNT/LGS ratio. Then the purified biocompatible single and multiple-walled CNTs were fed to silkworms, leading to a large CNT content in the resulting silk fibers. Reinforced silk fibers were produced with a mechanical strength as high as 1.07 GPa and a strain of 16.8%. The toughness modulus is 1.69 times than that of the unpurified group. The CNT-embedded silk fibers were characterized via Raman spectrometry and thermogravimetric analysis (TGA), demonstrating that the CNT content in the silk fibers increased 1.5-fold in comparison to the unpurified group. The increased CNT content not only contributed to the self-assembly into buffering knots of silk fibers, but it also enhanced the conductivity of graphitized silk. Our coating and purification strategies provide a potential facile way to obtain natural silk fibers with high mechanical performance.
机译:蚕丝纤维以其出色的光泽质感和有希望的机械性能而受到广泛关注。取决于丝纤维中CNT的含量,可以用碳纳米填料,特别是碳纳米管(CNT)来增强机械性能。为了增加CNT含量,使用木质素磺酸盐(LGS)作为表面活性剂以改善CNT的溶解性,分散性和生物相容性。通过另外的纯化方法进一步处理所得的CNT / LGS纳米复合材料,以去除过量的表面活性剂并提高CNT / LGS比。然后将纯化的生物相容性单壁和多壁CNT喂入蚕,导致所得蚕丝纤维中的CNT含量较高。生产的增强丝纤维的机械强度高达1.07 GPa,应变为16.8%。韧性模量是未纯化组的1.69倍。通过拉曼光谱和热重分析(TGA)对嵌入CNT的丝纤维进行了表征,表明与未纯化组相比,丝纤维中的CNT含量增加了1.5倍。 CNT含量的增加不仅有助于自组装成丝纤维的缓冲结,而且还增强了石墨化丝的导电性。我们的涂层和纯化策略为获得具有高机械性能的天然丝纤维提供了一种潜在的简便方法。

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