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Polymer‐Mediated Alignment of Carbon Nanotubes under High Magnetic Fields

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This article is published in Advanced Materials.The article was published on 2003-11-17. It has received 173 citations till now. The article focuses on the topics: Optical properties of carbon nanotubes & Mechanical properties of carbon nanotubes.

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Thermal conductivity of carbon nanotubes and their polymer nanocomposites: A review

TL;DR: In this article, the status of worldwide research in the thermal conductivity of carbon nanotubes and their polymer nanocomposites is reviewed, as well as the relationship between thermal conductivities and the micro- and nano-structure of the composites.
Journal ArticleDOI

Polymer nanocomposites-A comparison between carbon nanotubes, graphene, and clay as nanofillers

TL;DR: The processing of carbon nanotube, graphene, and clay montmorillonite platelet are reviewed as potential nanofillers to form nanocomposites to review the challenges and future outlook for nanofilled polymeric composites.
Journal ArticleDOI

Alignment of Carbon Nanotubes under Low Magnetic Fields through Attachment of Magnetic Nanoparticles

TL;DR: The volume magnetization of the particle coated MWNTs is found to be enhanced by 17% compared to the pure particles in a powder indicating that either the adsorption process onto the CNTs changes the particle magnetization, or the MW NTs carry an intrinsic magnetization due to remaining Ni used as a catalyst for the growth process.
Journal ArticleDOI

The thermal and mechanical properties of a polyurethane/multi-walled carbon nanotube composite

TL;DR: In this paper, a polyurethane/multi-walled carbon nanotube elastomer composite was synthesized and the properties of the composite were characterized by dynamic mechanical thermal analysis, thermogravimetric analysis and tensile testing.
Journal ArticleDOI

Electrical and piezoresistive properties of multi-walled carbon nanotube/polymer composite films aligned by an electric field

TL;DR: In this paper, the electrical conductivity and piezoresistive response of electric-field-aligned and randomly oriented 0.1-0.75% MWCNT/polysulfone films are evaluated.
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