Literature DB >> 23142944

An electrically and mechanically self-healing composite with pressure- and flexion-sensitive properties for electronic skin applications.

Benjamin C-K Tee1, Chao Wang, Ranulfo Allen, Zhenan Bao.   

Abstract

Pressure sensitivity and mechanical self-healing are two vital functions of the human skin. A flexible and electrically conducting material that can sense mechanical forces and yet be able to self-heal repeatably can be of use in emerging fields such as soft robotics and biomimetic prostheses, but combining all these properties together remains a challenging task. Here, we describe a composite material composed of a supramolecular organic polymer with embedded nickel nanostructured microparticles, which shows mechanical and electrical self-healing properties at ambient conditions. We also show that our material is pressure- and flexion-sensitive, and therefore suitable for electronic skin applications. The electrical conductivity can be tuned by varying the amount of nickel particles and can reach values as high as 40 S cm(-1). On rupture, the initial conductivity is repeatably restored with ∼90% efficiency after 15 s healing time, and the mechanical properties are completely restored after ∼10 min. The composite resistance varies inversely with applied flexion and tactile forces. These results demonstrate that natural skin's repeatable self-healing capability can be mimicked in conductive and piezoresistive materials, thus potentially expanding the scope of applications of current electronic skin systems.

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Year:  2012        PMID: 23142944     DOI: 10.1038/nnano.2012.192

Source DB:  PubMed          Journal:  Nat Nanotechnol        ISSN: 1748-3387            Impact factor:   39.213


  27 in total

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5.  Materials science. Stretching dielectric elastomer performance.

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6.  Thither supramolecular chemistry?

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7.  Autonomic healing of polymer composites.

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9.  Self-healing and thermoreversible rubber from supramolecular assembly.

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10.  Versatile one-pot synthesis of supramolecular plastics and self-healing rubbers.

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  96 in total

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2.  User-interactive electronic skin for instantaneous pressure visualization.

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3.  Self-healing chemistry enables the stable operation of silicon microparticle anodes for high-energy lithium-ion batteries.

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5.  Multifunctional materials for implantable and wearable photonic healthcare devices.

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6.  Flexible polymer transistors with high pressure sensitivity for application in electronic skin and health monitoring.

Authors:  Gregor Schwartz; Benjamin C-K Tee; Jianguo Mei; Anthony L Appleton; Do Hwan Kim; Huiliang Wang; Zhenan Bao
Journal:  Nat Commun       Date:  2013       Impact factor: 14.919

Review 7.  Polymers with autonomous life-cycle control.

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Review 8.  Pursuing prosthetic electronic skin.

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Review 9.  Biomedical soft robots: current status and perspective.

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Review 10.  Blending Electronics with the Human Body: A Pathway toward a Cybernetic Future.

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Journal:  Adv Sci (Weinh)       Date:  2018-08-01       Impact factor: 16.806

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