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Animal hairs as water-stimulated shape memory materials : mechanism and structural networks in molecular assemblies

机译:作为水刺激形状记忆材料的动物毛:分子组装中的机制和结构网络

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摘要

Animal hairs consisting of α-keratin biopolymers existing broadly in nature may be responsive to water for recovery to the innate shape from their fixed deformation, thus possess smart behavior, namely shape memory effect (SME). In this article, three typical animal hair fibers were first time investigated for their water-stimulated SME, and therefrom to identify the corresponding net-points and switches in their molecular and morphological structures. Experimentally, the SME manifested a good stability of high shape fixation ratio and reasonable recovery rate after many cycles of deformation programming under water stimulation. The effects of hydration on hair lateral size, recovery kinetics, dynamic mechanical behaviors and structural components (crystal, disulfide and hydrogen bonds) were then systematically studied. SME mechanisms were explored based on the variations of structural components in molecular assemblies of such smart fibers. A hybrid structural network model with single-switch and twin-net-points was thereafter proposed to interpret the water-stimulated shape memory mechanism of animal hairs. This original work is expected to provide inspiration for exploring other natural materials to reveal their smart functions and natural laws in animals including human as well as making more remarkable synthetic smart materials.
机译:由广泛存在于自然界中的α-角蛋白生物聚合物组成的动物毛发可能会对水产生反应,从而从其固定变形恢复为先天形状,因此具有聪明的行为,即形状记忆效应(SME)。在本文中,首次对三种典型的动物毛纤维进行了水刺激的SME的研究,然后从中识别出相应的网点及其分子和形态结构的转换。通过实验,在水刺激下经过多次变形程序设计后,SME表现出良好的稳定性,高形状固定率和合理的恢复率。然后系统地研究了水合作用对头发侧面尺寸,恢复动力学,动态力学行为和结构成分(晶体,二硫键和氢键)的影响。基于这种智能纤维的分子组装中结构成分的变化,探索了SME机制。随后提出了具有单开关点和双网点的混合结构网络模型来解释水刺激的动物毛形状记忆机制。预期该原创作品将为探索其他天然材料以揭示其在动物(包括人类)中的智能功能和自然规律提供灵感,并制造出更加出色的合成智能材料。

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  • 作者

    Xiao, X; Hu, J;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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