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A multifunctional shape-morphing elastomer with liquid metal inclusions.


ABSTRACT: Natural soft tissue achieves a rich variety of functionality through a hierarchy of molecular, microscale, and mesoscale structures and ordering. Inspired by such architectures, we introduce a soft, multifunctional composite capable of a unique combination of sensing, mechanically robust electronic connectivity, and active shape morphing. The material is composed of a compliant and deformable liquid crystal elastomer (LCE) matrix that can achieve macroscopic shape change through a liquid crystal phase transition. The matrix is dispersed with liquid metal (LM) microparticles that are used to tailor the thermal and electrical conductivity of the LCE without detrimentally altering its mechanical or shape-morphing properties. Demonstrations of this composite for sensing, actuation, circuitry, and soft robot locomotion suggest the potential for versatile, tissue-like multifunctionality.

SUBMITTER: Ford MJ 

PROVIDER: S-EPMC6815160 | biostudies-literature | 2019 Oct

REPOSITORIES: biostudies-literature

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A multifunctional shape-morphing elastomer with liquid metal inclusions.

Ford Michael J MJ   Ambulo Cedric P CP   Kent Teresa A TA   Markvicka Eric J EJ   Pan Chengfeng C   Malen Jonathan J   Ware Taylor H TH   Majidi Carmel C  

Proceedings of the National Academy of Sciences of the United States of America 20191007 43


Natural soft tissue achieves a rich variety of functionality through a hierarchy of molecular, microscale, and mesoscale structures and ordering. Inspired by such architectures, we introduce a soft, multifunctional composite capable of a unique combination of sensing, mechanically robust electronic connectivity, and active shape morphing. The material is composed of a compliant and deformable liquid crystal elastomer (LCE) matrix that can achieve macroscopic shape change through a liquid crystal  ...[more]

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