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    Programmable helical twisting in oriented humidity-responsive bilayer films generated by spray-coating of a chiral nematic liquid crystal 
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    • Programmable helical twisting in oriented humidity-responsive bilayer films generated by spray-coating of a chiral nematic liquid crystal
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    • School of Engineering and Materials Science
    • School of Engineering and Materials Science
    • Programmable helical twisting in oriented humidity-responsive bilayer films generated by spray-coating of a chiral nematic liquid crystal
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    Programmable helical twisting in oriented humidity-responsive bilayer films generated by spray-coating of a chiral nematic liquid crystal

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    Published version
    Embargoed until: 2100-01-01
    Reason: Publisher Embargo
    Volume
    6
    Pagination
    17724 - 17729
    Publisher
    Royal Society of Chemistry
    DOI
    10.1039/c8ta06984k
    Journal
    Journal of Materials Chemistry A
    Issue
    36
    ISSN
    2050-7488
    Metadata
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    Abstract
    © 2018 The Royal Society of Chemistry. A facile method is presented that generates humidity-driven helical twisting in thin, oriented polyamide 6 (PA6) films by spray-coating of a chiral nematic liquid crystal followed by photopolymerization into a network. The liquid crystal network (LCN) is self-aligned by the PA6 substrate, and the internal twist angle of the LCN provides the direction and extent of twisting for the expanding PA6 substrates. The handedness and extent of helical twisting in the bilayer film can be finely programmed by the degree of twist in the thin topping LCN layer. This straightforward spray-coating process and self-alignment of the liquid crystals (LCs) is compatible with high-throughput industrial manufacturing processes and is applicable to other stretched commodity polymers.
    Authors
    Verpaalen, RCP; Debije, MG; Bastiaansen, CWM; Halilović, H; Engels, TAP; Schenning, APHJ
    URI
    https://qmro.qmul.ac.uk/xmlui/handle/123456789/61353
    Collections
    • School of Engineering and Materials Science [1067]
    Copyright statements
    © The Royal Society of Chemistry 2018
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