Thermal conductivity improvement of polymer films by catechin-modified boron nitride nanotubes

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Abstract

Boron nitride nanotubes (BNNTs)/polyvinyl formal (PVF) composite films containing high BNNT fractions (up to 10 wt %) are fabricated. After nanotube surface modification with epicatechin gallate moleculess - "catechin" (the major component of a Japanese "green" tea) - the efficient improvement of PVF thermal conductivity is achieved (∼160% at only 1 wt % BNNT loading fraction). Catechin molecules, having numerous aromatic rings, effectively interact with the nanotube surfaces via π-π bonding in such a way that catechin species mediate between BNNTs and a polymer improving the heat transfer between the matrix and fillers. Finally, the polyvinyl alcohol (PVA) polymeric composites with drastically improved thermal conductivity (∼270%, even at a BNNT fraction as low as 3 wt %) are fabricated using the analogous catechin-modification route. © 2009 American Chemical Society.

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Terao, T., Bando, Y., Mitome, M., Zhi, C., Tang, C., & Golberg, D. (2009). Thermal conductivity improvement of polymer films by catechin-modified boron nitride nanotubes. Journal of Physical Chemistry C, 113(31), 13605–13609. https://doi.org/10.1021/jp903159s

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