Densely Packed Linear Assembles of Carbon Nanotube Bundles in Polysiloxane-Based Nanocomposite Films

Author:

Cho Hong-Baek1,Huynh Minh Triet Tan1,Nakayama Tadachika1,Nguyen Son Thanh1,Suematsu Hisayuki1,Suzuki Tsuneo1,Jiang Weihua1,Tanaka Satoshi1,Tokoi Yoshinori2,Lee Soo Wohn3,Sekino Tohoru4,Niihara Koichi1

Affiliation:

1. Extreme Energy-Density Research Institute, Nagaoka University of Technology, Nagaoka, Niigata 940-2188, Japan

2. Department of Electrical and Engineering System Engineering, Nagaoka National College of Technology, Nagaoka, Niigata 940-8532, Japan

3. Department of Environment Engineering, Sun Moon University, Asan, Chung Nam 336-708, Republic of Korea

4. Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai, Miyagi 980-8577, Japan

Abstract

Linear assemblies of carbon nanotubes (LACNTs) were fabricated and controlled in polysiloxane-based nanocomposite films and the effects of the LACNTs on the thermal and electrical properties of the films were investigated. CNTs were dispersed by mechanical stirring and sonication in a prepolymer of polysiloxane. Homogeneous suspensions were cast on polyamide spacers and oriented by linear-assembly by applying DC and switching DC electric fields before the mixture became cross-linked. Densely packed LACNTs that fixed the composite film surfaces were fabricated with various structures and thicknesses that depended on the DC and switching DC conditions. Polymer nanocomposites with different LACNT densities exhibited enhanced thermal and electrical conductivities and high optical transmittances. They are considered promising structural materials for electronic sectors in automotive and aerospace applications.

Funder

New Energy and Industrial Technology Development Organization

Publisher

Hindawi Limited

Subject

General Materials Science

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