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烫卷的人发:一种热流变复杂的形状记忆复合材料。

Perm-waved human hair: a thermorheologically complex shape memory composite.

机构信息

Department of Materials, The University of Manchester, Manchester, United Kingdom.

Department of Materials, The University of Manchester, Manchester, United Kingdom.

出版信息

Biophys J. 2021 Sep 7;120(17):3831-3840. doi: 10.1016/j.bpj.2021.03.044. Epub 2021 Jun 30.

Abstract

A "permanent" bent shape can be imposed on a straight human hair by a two-stage reduction/oxidation (perm-waving) process. The process relies on the molecular level on sulfhydryl/disulfide interchange as bond exchange reaction (BER). We expected a well-documented transition temperature around 60°C to be the trigger for the shape memory (SM) process of perm-waved hair. We confirm the existence of the SM process as such and investigate its time and temperature dependence. The results show a two-stage SM behavior, implying two distinct variations of the BER. The model to fit the data contains two fractional, normalized, elastic bending rigidities, which are strictly compensatory. They show Arrhenius-type temperature dependence and a common activation energy (E) of ∼-12 kJ/mol. The characteristic relaxation time for the first SM process shows little, if any, temperature dependence (E = -4 ± 2.7 kJ/mol). This is in contrast to the second process (E = -58 ± 5.5 kJ/mol) but in line with the expected properties of the suggested BERs. None of the parameters shows any sign of the expected trigger transition (∼60°C). We hypothesize that this specific transition occurs only for large tensile deformations, when specific SS bonds in the intermediate filaments of hair are activated. There is thus no specific "trigger" transition for the SM behavior of bent, perm-waved hair.

摘要

“永久性”的弯曲形状可以通过两步还原/氧化(烫发)过程施加到直的人类头发上。该过程依赖于巯基/二硫键交换作为键交换反应(BER)在分子水平上进行。我们预计一个有充分记录的转变温度约为 60°C 将成为烫发头发形状记忆(SM)过程的触发因素。我们确认了这种 SM 过程的存在,并研究了它的时间和温度依赖性。结果表明存在两阶段的 SM 行为,这意味着 BER 存在两种不同的变化。拟合数据的模型包含两个分数化、归一化、弹性弯曲刚性,它们是严格互补的。它们表现出 Arrhenius 型温度依赖性和共同的活化能(E)约为-12 kJ/mol。第一个 SM 过程的特征松弛时间几乎没有(如果有的话)温度依赖性(E = -4 ± 2.7 kJ/mol)。这与第二个过程(E = -58 ± 5.5 kJ/mol)形成对比,但符合所建议的 BER 的预期特性。没有任何参数显示出预期触发转变(约 60°C)的迹象。我们假设这种特定的转变仅在头发中间丝中特定的 SS 键被激活时发生在大的拉伸变形中。因此,对于弯曲的烫发头发的 SM 行为没有特定的“触发”转变。

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