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Molecular Fundaments of Mechanical Properties of Spider Silk

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【作者】 潘志娟刘敏李春萍李栋高盛家镛

【Author】 PAN Zhi-juan, LIU Min, LI Chun-ping,LI Dong-gaoSHENG Jia-yongCollege of Material Engineering Suzhou University, Suzhou, 215021

【机构】 College of Material Engineering Suzhou UniversitySuzhou215021215021

【摘要】 <正> Dragline, framework and cocoon silk fibers of Araneus Ventricosus were used for this study. To investigate the microstructure mechanisms of stress-strain behavior of spider silk, firstly, amino acid compositions were analyzed and molecular conformations and crystallinity were measured with Raman spectra and X-ray diffraction respectively. The results showed that there were more amino acids with large side groups and polar ones in spider silk than those of Bombyx silk, and the amino acid distribution varied with different spider silk. The molecular structures were mainlyα-helix and β-sheet, and random coil andβ-turn existed as well. The proportions and arrangement of these conformations of dragline silk were different from framework and cocoon silk fibers. Microstructure was one of important factors of excellent mechanical properties of spider silk. Crystallinity of spider silk was very low, which implied that the roles of crystal on spider silk were not as great as other protein fibers.

【Abstract】 Dragline, framework and cocoon silk fibers of Araneus Ventricosus were used for this study. To investigate the microstructure mechanisms of stress-strain behavior of spider silk, firstly, amino acid compositions were analyzed and molecular conformations and crystallinity were measured with Raman spectra and X-ray diffraction respectively. The results showed that there were more amino acids with large side groups and polar ones in spider silk than those of Bombyx silk, and the amino acid distribution varied with different spider silk. The molecular structures were mainlyα-helix and β-sheet, and random coil andβ-turn existed as well. The proportions and arrangement of these conformations of dragline silk were different from framework and cocoon silk fibers. Microstructure was one of important factors of excellent mechanical properties of spider silk. Crystallinity of spider silk was very low, which implied that the roles of crystal on spider silk were not as great as other protein fibers.

  • 【文献出处】 Journal of DongHua University ,东华大学学报(英文版) , 编辑部邮箱 ,2003年04期
  • 【分类号】TB39
  • 【被引频次】3
  • 【下载频次】66
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