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Highly thermoconductive yet ultraflexible polymer composites with superior mechanical properties and autonomous self-healing functionality via a binary filler strategy.

Dong WangDingyao LiuJianhua XuJiajun FuKai Wu
Published in: Materials horizons (2021)
It is still a formidable challenge to develop ideal thermal dissipation materials with simultaneous high thermal conductivity, excellent mechanical softness and toughness, and spontaneous self-healing. Herein, we report the introduction of sandwich-like boron nitride nanosheets-liquid metal binary fillers into an artificial poly(urea-urethane) elastomer to address the above issue, which confers the composite elastomer with a unique thermal-mechanical-healing combination, including a low modulus, high in-plane thermal conductivity and high mass loading of rigid fillers but self-recoverability and room-temperature self-healing.
Keyphrases
  • room temperature
  • ionic liquid
  • hyaluronic acid
  • reduced graphene oxide
  • quantum dots
  • gold nanoparticles
  • visible light
  • transition metal