e-space
Manchester Metropolitan University's Research Repository

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

    Wortmann, FJ, Jones, C ORCID logoORCID: https://orcid.org/0000-0002-1824-7234, Davies, TJ and Wortmann, G (2021) Perm-waved human hair: a thermorheologically complex shape memory composite. Biophysical Journal, 120 (17). pp. 3831-3840. ISSN 0006-3495

    [img]
    Preview
    Accepted Version
    Available under License Creative Commons Attribution Non-commercial No Derivatives.

    Download (819kB) | Preview

    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 (EA) of ∼−12 kJ/mol. The characteristic relaxation time for the first SM process shows little, if any, temperature dependence (EA = −4 ± 2.7 kJ/mol). This is in contrast to the second process (EA = −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.

    Impact and Reach

    Statistics

    Activity Overview
    6 month trend
    95Downloads
    6 month trend
    19Hits

    Additional statistics for this dataset are available via IRStats2.

    Altmetric

    Repository staff only

    Edit record Edit record