Flexible and high thermal conductivity thin films based on polymer: Aminated multi-walled carbon nanotubes/micro-aluminum nitride hybrid composites

Multi-walled carbon nanotubes functionalized with amino groups (MWCNT-NH2) were prepared via the chemical modification of the carboxyl groups introduced on the surface of MWCNT. The synthesized materials and untreated micro-aluminum nitride (micro-AlN) particles were embedded in a polymer resin, viz...

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Veröffentlicht in:Composites. Part A, Applied science and manufacturing Applied science and manufacturing, 2012-11, Vol.43 (11), p.1860-1868
Hauptverfasser: Choi, Seran, Im, Hyungu, Kim, Jooheon
Format: Artikel
Sprache:eng
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Zusammenfassung:Multi-walled carbon nanotubes functionalized with amino groups (MWCNT-NH2) were prepared via the chemical modification of the carboxyl groups introduced on the surface of MWCNT. The synthesized materials and untreated micro-aluminum nitride (micro-AlN) particles were embedded in a polymer resin, viz. epoxy-terminated dimethyl siloxane. The thermal diffusivity and conductivity of all of the composites continuously improved with increasing the content of fillers. A thermal conductivity of 3.81W/mK was achieved at an MWCNT-NH2 loading of 3wt% and micro-AlN loading of 70wt% while their flexibility was maintained. This result is due to the high aspect ratio of the MWCNT-NH2 which allows a heat conductive percolation network to be established between the micro-AlN particles. Also, all of the composites fabricated by the optimized process endured about 200,000 bending cycles without rupturing or losing their thermal conductivity.
ISSN:1359-835X
1878-5840
DOI:10.1016/j.compositesa.2012.06.009