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Bi-directional high thermal conductive epoxy composites with radially aligned boron nitride nanosheets lamellae

机译:具有径向对齐的氮化硼纳米薄膜薄膜的双向高导热环氧树脂复合材料

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摘要

Hexagonal boron nitride (h-BN), as a high thermal conductive filler, has been widely used to construct thermal transport network in polymers. However, anisotropic thermal property of BN and its conventional thermal conductive network usually lead to high thermal conductivity in one direction that limits the overall heat dissipation effect. Herein, we report a novel radially aligned three-dimensional boron nitride nanosheets/epoxy composite for thermal interface materials via radial freeze-casting method. The as-prepared composite with radially aligned boron nitride nanosheets lamellae exhibits bidirectional high thermal conductivity, with 4.02 W m(-1) K-1 in the through-plane direction and 3.87 W m(-1) K-1 in the in-plane direction even at low BNNS loading (e.g., 15 vol%), respectively. Besides, excellent electronic insulation property and shape stability can also meet the requirements of isotropic TIM in thermal management.
机译:作为高导热填料的六边形氮化硼(H-BN)已被广泛用于构建聚合物中的热传输网络。然而,BN的各向异性热特性及其传统的导热网络通常在一个方向上导致高导热率,这限制了整体散热效果。在此,我们通过径向冷冻铸造方法报告一种新的径向对齐的三维氮化物纳米晶片/环氧复合材料,用于热界面材料。具有径向对齐的氮化硼纳米片薄片的AS制备的复合材料表现出双向高导热率,在通孔方向上具有4.02Wm(-1)k-1,在其中3.87W m(-1)k-1即使在低BNNs负载(例如,15 Vol%)处也分别为平面方向。此外,优异的电子绝缘性能和形状稳定性还可以满足热管理中各向同性蒂姆的要求。

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