4.7 Article

Improved dielectric properties, mechanical properties, and thermal conductivity properties of polymer composites via controlling interfacial compatibility with bio-inspired method

Journal

APPLIED SURFACE SCIENCE
Volume 439, Issue -, Pages 186-195

Publisher

ELSEVIER
DOI: 10.1016/j.apsusc.2017.12.250

Keywords

Al2O3 particles; Nitrile rubber; Thermal conductivity; Dielectric properties; Mechanical properties

Funding

  1. National Natural Science Foundation of China [51503019]
  2. Beijing Natural Science Foundation [2162014]
  3. Beijing Science and Technology Project of Beijing Municipal Education Commission [KM201710017005]

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Surface functionalization of Al2O3 nano-particles by mussel-inspired poly(dopamine) (PDA) was developed to improve the dielectric properties, mechanical properties, and thermal conductivity properties of nitrile rubber (NBR) matrix. As strong adhesion of PDA to Al2O3 nano-particles and hydrogen bonds formed by the catechol groups of PDA and the polar acrylonitrile groups of NBR, the dispersion of Al2O3-PDA/NBR composites was improved and the interfacial force between Al2O3-PDA and NBR matrix was enhanced. Thus, the Al2O3-PDA/NBR composites exhibited higher dielectric constant, better mechanical properties, and larger thermal conductivity comparing with Al2O3/NBR composites at the same filler content. The largest thermal conductivity of Al2O3-PDA/NBR composite filled with 30 phr Al2O3-PDA was 0.21 W/m K, which was 122% times of pure NBR. In addition, the Al2O3-PDA/NBR composite filled with 30 phr Al2O3-PDA displayed a high tensile strength about 2.61 MPa, which was about 255% of pure NBR. This procedure is eco-friendly and easy handling, which provides a promising route to polymer composites in application of thermal conductivity field. (C) 2018 Elsevier B.V. All rights reserved.

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