Thermal properties and percolation in carbon nanotube-polymer composites
Тепловые свойства и перколяция в композитах на основе углеродных нанотрубок и полимера
2007-11-12
SCID: 54.1/3bm2ftjb
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electrical conductivitypercolationpolymethylmetacrylatesingle walled carbon nanotubethermal conductivity
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Abstract (AI)
Thermal properties of single walled carbon nanotube (SWNT)/polymethylmetacrylate composite thick films have been investigated at room temperature. The introduction of ∼7% SWNT into the polymer matrix enhances the thermal conductivity of the composite by 55% while the electrical conductivity increases by several orders of magnitude. Despite this difference, we show that the (moderate) enhancement of the thermal conductivity is quantified by the percolation of the SWNT network. A thermal conductivity of the SWNT network of ∼55W∕mK is estimated.
Key Findings
1
Adding approximately 7% single-walled carbon nanotubes (SWNT) to polymethylmethacrylate increases composite thermal conductivity by 55% at room temperature.
2
Electrical conductivity of the composite increases by several orders of magnitude with the introduction of ~7% SWNT, much larger than the thermal conductivity change.
3
The moderate thermal conductivity enhancement is explained by percolation of the SWNT network within the polymer matrix.
4
The thermal conductivity of the SWNT network itself is estimated to be approximately 55 W/mK.
Research Object
Single-walled carbon nanotube (SWNT)–polymethylmethacrylate (PMMA) composite thick films
Research Subject
Thermal properties and their relation to SWNT network percolation, specifically composite thermal conductivity enhancement and estimated SWNT-network thermal conductivity
Publication Details
Publication Date
2007-11-12
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