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柔性聚酰亚胺薄膜与功能化氮化硼和氧化石墨烯同时杂化,以提高热传导和尺寸稳定性。

Flexible polyimide films hybrid with functionalized boron nitride and graphene oxide simultaneously to improve thermal conduction and dimensional stability.

作者信息

Tsai Mei-Hui, Tseng I-Hsiang, Chiang Jen-Chi, Li Jheng-Jia

机构信息

Department of Chemical and Materials Engineering, National Chin-Yi University of Technology , No. 57, Sec. 2, Chungshan Road, Taipin District, Taichung 41170, Taiwan.

出版信息

ACS Appl Mater Interfaces. 2014 Jun 11;6(11):8639-45. doi: 10.1021/am501323m. Epub 2014 May 27.

Abstract

Coupling agent-functionalized boron nitride (f-BN) and glycidyl methacrylate-grafted graphene (g-TrG) are simultaneously blended with polyimide (PI) to fabricate a flexible, electrically insulating and thermally conductive PI composite film. The silk-like g-TrG successfully fills in the gap between PI and f-BN to complete the thermal conduction network. In addition, the strong interaction between surface functional groups on f-BN and g-TrG contributes to the effective phonon transfer in the PI matrix. The thermal conductivity (TC) of the PI/f-BN composite films containing additional 1 wt % of g-TrG is at least doubled to the value of PI/f-BN and as high as 16 times to that of the pure PI. The hybrid film PI/f-BN-50/g-TrG-1 exhibits excellent flexibility, sufficient insulating property, the highest TC of 2.11 W/mK, and ultralow coefficient of thermal expansion of 11 ppm/K, which are perfect conditions for future flexible substrate materials requiring efficient heat dissipation.

摘要

将偶联剂功能化的氮化硼(f-BN)和甲基丙烯酸缩水甘油酯接枝的石墨烯(g-TrG)同时与聚酰亚胺(PI)共混,以制备一种柔性、电绝缘且导热的PI复合薄膜。丝状的g-TrG成功填充了PI与f-BN之间的间隙,从而完成了热传导网络。此外,f-BN与g-TrG表面官能团之间的强相互作用有助于在PI基体中实现有效的声子传递。含有额外1 wt% g-TrG的PI/f-BN复合薄膜的热导率(TC)至少是PI/f-BN的两倍,高达纯PI的16倍。混合薄膜PI/f-BN-50/g-TrG-1表现出优异的柔韧性、足够的绝缘性能、2.11 W/mK的最高热导率以及11 ppm/K的超低热膨胀系数,这些都是未来对高效散热有要求的柔性衬底材料的理想条件。

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