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Role of block copolymer morphology on particle percolation of polymer nanocomposites

  • Yancong Feng
  • , Nanying Ning
  • , Qiangli Zhao
  • , Jun Liu
  • , Liqun Zhang
  • , Ming Tian
  • , Jianguo Mi
  • Beijing University of Chemical Technology
  • Peking University

科研成果: 期刊稿件文章同行评审

14 引用 (Scopus)

摘要

In this study, the effects of nanoparticle volume fraction, block stiffness, and diblock composition on the microstructure and electrical properties of composites are investigated using molecular dynamics simulation. It is shown that selective localization of conductive nanoparticles in a continuous block of diblock copolymer can dramatically reduce the percolation threshold. In the flexible-flexible copolymer systems with a relatively low particle loading, as the ratio of two blocks varies, one sees four kinds of phase structure: signal continuous, lamellar, co-continuous, and dispersed, corresponding to the order-disorder and continuity-dispersion transitions. In consideration of particle connectivity, the best electrical performance can be achieved with a special tri-continuous microstructure. While in the semi-flexible systems, the existence of rigid blocks can destroy the lamellar structure. If particles are located in the flexible block, a moderate stiffness of the rigid block can extensively enlarge the tri-continuous region, and high conductivity can be realized over a wide range of diblock compositions. If particles are located in the rigid block, however, high conductivity only emerges in a narrow composition range. In addition, the block should be prevented from becoming overstiff because this will cause direct particle aggregation.

源语言英语
页(从-至)8236-8244
页数9
期刊Soft Matter
10
41
DOI
出版状态已出版 - 7 11月 2014
已对外发布

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