Polymer-dispersed liquid crystal elastomers
Andraž Rešetič,
Jerneja Milavec,
Blaž Zupančič,
Valentina Domenici and
Boštjan Zalar ()
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Andraž Rešetič: J. Stefan Institute
Jerneja Milavec: J. Stefan Institute
Blaž Zupančič: J. Stefan Institute
Valentina Domenici: Università degli studi di Pisa
Boštjan Zalar: J. Stefan Institute
Nature Communications, 2016, vol. 7, issue 1, 1-10
Abstract:
Abstract The need for mechanical manipulation during the curing of conventional liquid crystal elastomers diminishes their applicability in the field of shape-programmable soft materials and future applications in additive manufacturing. Here we report on polymer-dispersed liquid crystal elastomers, novel composite materials that eliminate this difficulty. Their thermal shape memory anisotropy is imprinted by curing in external magnetic field, providing for conventional moulding of macroscopically sized soft, thermomechanically active elastic objects of general shapes. The binary soft-soft composition of isotropic elastomer matrix, filled with freeze-fracture-fabricated, oriented liquid crystal elastomer microparticles as colloidal inclusions, allows for fine-tuning of thermal morphing behaviour. This is accomplished by adjusting the concentration, spatial distribution and orientation of microparticles or using blends of microparticles with different thermomechanical characteristics. We demonstrate that any Gaussian thermomechanical deformation mode (bend, cup, saddle, left and right twist) of a planar sample, as well as beat-like actuation, is attainable with bilayer microparticle configurations.
Date: 2016
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Persistent link: https://EconPapers.repec.org/RePEc:nat:natcom:v:7:y:2016:i:1:d:10.1038_ncomms13140
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DOI: 10.1038/ncomms13140
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