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Enhancement of Thermal Conductive Pathway of Boron Nitride Coated Polymethylsilsesquioxane Composite

Authors
Kim, GyungbokRyu, Seung HanLee, Jun-TaeSeong, Ki-HunLee, Jae EunYoon, Phil-JoongKim, Bum-SungHussain, ManwarChoa, Yong-Ho
Issue Date
Nov-2013
Publisher
American Scientific Publishers
Keywords
Boron Nitride; PMSQ; Nanocomposite; Thermal Pathways; Laser Flash Method
Citation
Journal of Nanoscience and Nanotechnology, v.13, no.11, pp.7695 - 7700
Indexed
SCIE
SCOPUS
Journal Title
Journal of Nanoscience and Nanotechnology
Volume
13
Number
11
Start Page
7695
End Page
7700
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/181977
DOI
10.1166/jnn.2013.7826
ISSN
1533-4880
Abstract
We report here in the fabrication of enhanced thermal conductive pathway nanocomposites of boron nitride (BN)-coated polymethylsilsesquioxane (PMSQ) composite beads using isopropyl alcohol (IPA) as a mixing medium. Exfoliated and size-reduced boron nitride particles were successfully coated on the PMSQ beads and explained by surface charge differences. A homogeneous dispersion and coating of BN on the PMSQ beads using IPA medium was confirmed by SEM. Each condition of the composite powder was carried into the stainless still mould and then hot pressed in an electrically heated hot press machine. Three-dimensional percolation networks and conductive pathways created by exfoliated BN were precisely formed in the nanocomposites. The thermal conductivity of nanocomposites was measured by multiplying specific gravity, specific heat, and thermal diffusivity, based upon the laser flash method. Densification of the composite resulted in better thermal properties. For an epoxy reinforced composite with 30 vol% BN and PMSQ, a thermal conductivity of nine times higher than that of pristine PMSQ was observed.
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