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A comparative study on the dielectric and dynamic mechanical relaxation behavior of the regenerated silk fibroin films

机译:再生丝素蛋白膜介电和动态机械松弛行为的比较研究

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摘要

In this paper, the relaxation behavior of the regenerated silk fibroin (SF) films was investigated using dielectric thermal analysis (DETA), and compared with the dynamic mechanical behavior obtained from dynamic mechanical thermal analysis (DMTA), in order to gain a better understanding of the characteristics of dielectric behavior of SF film and identify the differences between the two analyses. Compared to DMTA, DETA exhibited a higher sensitivity on the molecular relaxation behaviors at low temperature ranges that showed a high γ-relaxation peak intensity without noise. However, it was not effective to examine the relaxation behaviors at high temperatures such as α- and α c -relaxations that showed a shoulder peak shape. On the contrary, DMTA provided more information regarding the relaxation behaviors at high temperatures, by exhibiting the changes in width, intensity and temperature shift of the α-relaxation peak according to various crystallinities. Conclusively, DETA and DMTA can be utilized in a complementary manner to study the relaxation behavior of SF over a wide temperature range, due to the different sensitivity of each technique at different temperatures.
机译:本文使用介电热分析(DETA)研究了再生丝素蛋白(SF)薄膜的弛豫行为,并将其与动态力学热分析(DMTA)获得的动态力学行为进行了比较,以便更好地理解SF薄膜的介电特性的特征,并确定两次分析之间的差异。与DMTA相比,DETA对低温下的分子弛豫行为表现出更高的敏感性,而低温下表现出高的γ弛豫峰强度而无噪音。但是,检查在高温下的松弛行为,例如显示肩峰形状的α-和αc 松弛,是无效的。相反,DMTA通过显示α弛豫峰的宽度,强度和温度变化随各种结晶度的变化,提供了有关高温下弛豫行为的更多信息。最后,由于每种技术在不同温度下的灵敏度不同,因此可以互补的方式使用DETA和DMTA来研究SF在较宽温度范围内的松弛行为。

著录项

  • 来源
    《Macromolecular Research》 |2009年第10期|785-790|共6页
  • 作者单位

    Department of Natural Fiber Science Kyungpook National University 702-701 Daegu Korea;

    Department of Bioengineering University of Washington 1705 NE Pacific Street 98195 Seattle Washington USA;

    Sericultural ampamp Apicultural Materials Division National Academy of Agricultural Science RDA 441-100 Suwon Korea;

    Department of Biosystems and Biomaterials Sciences and Engineering Seoul National University 151-921 Seoul Korea;

    Department of Biosystems and Biomaterials Sciences and Engineering Seoul National University 151-921 Seoul Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    regenerated silk fibroin; dielectric thermal analysis; dynamic mechanical thermal analysis;

    机译:再生丝素蛋白介电热分析动态力学热分析;

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