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再生蚕丝的制备及其结构和性能初探

林江滨, 姚晋荣, 周丽, 陈新, 邵正中   

  1. 复旦大学高分子科学系, 教育部聚合物分子工程重点实验室, 上海 200433
  • 收稿日期:2006-06-22 修回日期:1900-01-01 出版日期:2007-06-10 发布日期:2007-06-10
  • 通讯作者: 邵正中

Preliminary Exploration of the Artificial Preparation, Structures and Properties of Regenerated Silk Fibers

LIN Jiang-Bin, YAO Jin-Rong, ZHOU Li, CHEN Xin, SHAO Zheng-Zhong*   

  1. Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Fudan University, Shanghai 20043, China
  • Received:2006-06-22 Revised:1900-01-01 Online:2007-06-10 Published:2007-06-10
  • Contact: SHAO Zheng-Zhong

摘要: 在制备高浓度高分子量蚕丝素蛋白水溶液的基础上, 采用湿法纺丝技术, 在一定条件下纺制出力学性能优于天然蚕(茧)丝的再生蚕丝纤维, 其断裂强度及断裂伸长率分别达到0.5 GPa和20%. 扫描电镜观察结果显示: 初生纤维具有典型的“皮芯”结构, 而纤维内部则为疏松多孔的网状或蜂窝状结构; 经过一定的后拉伸处理后, 纤维的表面变得光滑, 且内部结构也趋于致密. 固体 13C核磁共振及拉曼光谱分析结果表明, 后拉伸及热湿处理均有利于提高纤维内部β-折叠结构的含量, 分子链的规整度和取向性也随之改善, 从而使再生蚕丝纤维的力学性能得到进一步提高.

关键词: 丝素蛋白, 人工纺丝, 后拉伸, 构象, 力学性能

Abstract: Regenerated silk fibroin fibers with remarkable mechanical properties were successfully prepared via wet spinning technique, based on the high concentration and high molecular weight silk fibroin aqueous solution as spinning dope. With the observation of SEM, it could be found that the cellular structure may exist in the core of as-spun fibers. The regenerated silk fibers exhibited a smooth surface and dense structure after the post-drawn process. The NMR and Raman spectra results reveal that the β-sheet content increased with the increase of drawn ratios. It was also found that the steam-annealing can further improve the orientation of the macromolecular chains in the fibers. After the post treatment(both post-drawn and steam annealing), the breaking strength and the elongation at break can reach 0.5 GPa and 22%, separately, which is close or even better than that of natural silk(cocoon) fibers.

Key words: Silk fibroin, Artificial spinning, Post-drawn, Conformation, Mechanical property

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