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首页> 外文期刊>Journal of Applied Polymer Science >Wet-spun conductive silk fibroin-polyaniline filaments prepared from a formic acid-shell solution
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Wet-spun conductive silk fibroin-polyaniline filaments prepared from a formic acid-shell solution

机译:由甲酸 - 壳溶液制备的湿式导电丝纤维蛋白 - 聚苯胺长丝

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摘要

Shell wastes represent a considerable quantity of byproducts in the coastal area. From the viewpoint of ecofriendly and economical disposal, shell wastes are dissolved in formic acid to prepare an ionic liquid at room temperature and dissolve silk fibers to prepare a spinning solution. In this study, we developed conductive filaments made of silk fibroin (SF) and polyaniline (PANI) with wet-spinning techniques and a water coagulation bath. We then evaluated its surface morphologies and structural, mechanical, and electrical properties. The average diameters of the SF-PANI filaments increased with SF concentration from 8.0 to 14.0 wt % when PANI content was 0.1 wt %. The structure of SF-PANI filaments included the coexistence of silk I and silk II and was not affected by the addition of PANI. Moreover, the stress and strain of the SF-PANI filament were 4.46 +/- 0.57 MPa and 16.18 +/- 2.35%, respectively. After three drafts, the stress and strain of the SF-PANI filaments reached their maxima: 22.08 +/- 0.2 MPa and 63.2 +/- 2.56%, respectively. In addition, the electrical properties of the SF-PANI filaments increased with the addition of PANI. Thus, all data in this study suggest that recycled shell wastes can be reused as dissolution systems to prepare SF-based functional conductive filaments. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47127.
机译:壳牌废物代表沿海地区的相当数量的副产品。从Ecofriendly和经济处理的角度来看,壳废物溶解在甲酸中以在室温下制备离子液体并溶解丝纤维以制备纺丝溶液。在这项研究中,我们开发了具有湿纺丝技术和水凝浴的丝素蛋白(SF)和聚苯胺(PANI)制成的导电长丝。然后,我们评估其表面形态和结构,机械和电性能。当PANI含量为0.1wt%时,SF-PANI长丝的平均直径随SF浓度的增加,SF浓度为8.0至14.0wt%。 SF-PANI长丝的结构包括丝绸I和丝绸II的共存,不受添加PANI的影响。此外,SF-PANI丝的应力和菌株分别为4.46 +/- 0.57MPa和16.18 +/- 2.35%。在三次草稿后,SF-PANI长丝的压力和菌株分别达到最大值:22.08 +/- 0.2MPa和63.2 +/- 2.56%。此外,SF-PANI长丝的电特性随着PANI的添加而增加。因此,本研究中的所有数据表明,再循环壳废物可以重复使用作为溶出系统以制备基于SF的功能导电细丝。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47127。

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