Fiber Reinforced Layered Dielectric Nanocomposite

Abstract

Polymer dielectrics find applications in modern electronic and electrical technologies due to their low density, durability, high dielectric breakdown strength, and design flexibility. However, they are not reliable at high temperatures due to their low mechanical integrity and thermal stability. Herein, a self‐assembled dielectric nanocomposite is reported, which integrates 1D polyaramid nanofibers and 2D boron nitride nanosheets through a vacuum‐assisted layer‐by‐layer infiltration process. The resulting nanocomposite exhibits hierarchical stacking between the 2D nanosheets and 1D nanofibers. Specifically, the 2D nanosheets provide a thermally conductive network while the 1D nanofibers provide mechanical flexibility and robustness through entangled nanofiber–nanosheet morphologies. Experiments and density functional theory show that the nanocomposites through thickness heat transfer processes are nearly identical to that of boron nitride due to synergistic stacking of polyaramid units onto boron nitride nanosheets through van der Waals interactions. The nanocomposite sheets outperform conventional dielectric polymers in terms of mechanical properties (about 4–20‐fold increase of stiffness), light weight (density ≈1.01 g cm−3), dielectric stability over a broad range of temperature (25–200 °C) and frequencies (103–106 Hz), good dielectric breakdown strength (≈292 MV m−1), and excellent thermal management capability (about 5–24 times higher thermal conductivity) such as fast heat dissipation.

Document Details

Document Type
Pub Defense Publication
Publication Date
May 08, 2019
Source ID
10.1002/adfm.201900056

Entities

People

  • Anand B Puthirath
  • Aparna Adumbumkulath
  • Devashish Salpekar
  • Fanshu Yuan
  • Ganguli Babu
  • Hossein Robatjazi
  • Huili G. Xing
  • Kazuki Nomoto
  • Morgan Barnes
  • Muhammad M. Rahman
  • Pulickel Ajayan
  • Rafael Verduzco
  • Sampath Kommandur
  • Sandhya Susarla
  • Seyed Mohammad Sajadi
  • Shannon K Yee
  • Sm Islam
  • Thierry Tsafack
  • Zixing Wang

Organizations

  • Cornell University
  • Georgia Tech
  • Indo-US Science and Technology Forum
  • Nanjing University of Science and Technology
  • Rice University
  • United States Army Research Laboratory

Tags

Fields of Study

  • Materials science

Readers

  • Nanocomposite Materials Science
  • Plasma Physics.
  • Quantum Dot Semiconductor Device Photonics and Graphene Optoelectronic Materials and THz Physics.

Technology Areas

  • Biotechnology
  • Microelectronics
  • Microelectronics - Graphene