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Thermoplastic Polyurethane Nanocomposites Produced via Impregnation of Long Carbon Nanotube Forests
Authors:Glaura G Silva  Marco‐Tulio F Rodrigues  Cristiano Fantini  Raquel S Borges  Marcos A Pimenta  Brent J Carey  Lijie Ci  Pulickel M Ajayan
Affiliation:1. Instituto de Ciências Exatas, Universidade Federal de Minas Gerais, Belo Horizonte, MG, Brazil;2. Department of Mechanical Engineering and Materials Science, Rice University, Houston, Texas, USA
Abstract:TPU was infiltrated into vertically aligned, 3.5 mm‐long MWNT forests to produce continuously reinforced anisotropic nanocomposites, and thermomechanical and electrical testing has revealed multifunctionality which shows promise for numerous applications. A 1000% increase in the storage modulus at 70 °C was observed as compared to the neat TPU, and these continuously aligned composites showed electrical conductivity two orders‐of‐magnitude greater (≈1.5 S · cm?1) than randomly aligned composites prepared using CNTs from these forests. The heightened improvement for the continuously reinforced composite appears to be owed to the extremely high aspect ratio of these CNTs and the interconnected network which remains after infiltration.
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Keywords:carbon nanotubes  electrical properties  mechanical properties  nanocomposites  thermal properties
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