4.4 Article

Self-Healable and Mechanically Reinforced Multidimensional-Carbon/Polyurethane Dielectric Nanocomposite Incorporates Various Functionalities for Capacitive Strain Sensor Applications

Journal

MACROMOLECULAR CHEMISTRY AND PHYSICS
Volume 219, Issue 23, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/macp.201800369

Keywords

capacitive strain sensors; carbon nanomaterials; polyurethane; self-healing; wearable electronics

Funding

  1. NSFC-Guangdong Jointed Funding [U1601202]
  2. NSFC-Shenzhen Robot Jointed Funding [U1613215]
  3. Key Laboratory of Guangdong Province [2014B030301014]
  4. R&D Funds for Basic Research Program of Shenzhen [JCYJ20150401145529012, JCYJ20160331191741738, JSGG20160229194437896]
  5. SIAT Innovation Program for Excellent Young Researchers [Y6G015]

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With the continuous development of wearable sensing devices utilized for human motion monitoring, structural health monitoring, and robotic systems, higher demands on a set of material properties of functional materials are placed. Moreover, high flexibility and self-healability are indispensable properties in wearable electronic devices. Herein, a self-healing flexible dielectric nanocomposite with various incorporated functionalities is described. Multidimensional carbons, that is, graphene and carbon nanotubes, are introduced into a self-healing polyurethane matrix to obtain the healable dielectric nanocomposite which contributes to the capacitance response of the wearable sensors. The as-prepared nanocomposite exhibits a dramatic increase in properties, which reach up to 10.50 +/- 0.44 MPa for Young's modulus, 35.1 for dielectric constant at 10(3) Hz, and 1.67 W m(-1) K-1 for the in-plane thermal conductivity with low loading. More importantly, the nanocomposites display a unique ability to recover the structure and multiple properties after mechanical damages. In addition, a self-healing capacitive strain sensor with the sandwich structure is prepared based on the nanocomposite. The strain sensor shows good sensitivity in a larger strain range (up to 100%), stable responsiveness, and healable ability.

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