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Enhanced Thermal Conductivity of Silicone Composites Filled with Few-Layered Hexagonal Boron Nitride

机译:增强含有少量六边形氮化硼的硅胶复合材料的导热率

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摘要

In this study, we demonstrate the use of silicone/few-layered hexagonal boron nitride (FL-hBN) composites for heat dissipation applications. FL-hBN is synthesized via a green, facile, low-cost and scalable liquid exfoliation method using a jet cavitation process. The crystal structures, surface morphologies and specific surface areas of pristine h-BN and FL-hBN were characterized by XRD, SEM, TEM and AFM (atomic force microscopy). The results confirmed that FL-hBN with a thickness of ~4 nm was successfully obtained from the exfoliation process. In addition, we introduced both pristine h-BN and FL-hBN into silicone with different ratios to study their thermal properties. The results of the laser flash analysis indicate that the silicon/FL-hBN composite exhibited a higher thermal conductivity than that of the silicone/h-BN composite. With the optimal loading content of 30 wt.% FL-hBN content, the thermal conductivity of the composite could be enhanced to 230%, which is higher than that of silicone/h-BN (189%). These results indicate that jet cavitation is an effective and swift way to obtain few-layered hexagonal boron nitride that could effectively enhance the thermal conductivity of silicone composites.
机译:在这项研究中,我们证明了使用硅氧烷/少数层六方硼氮化物(FL-HBN)复合材料进行散热应用。通过使用喷射空化过程,通过绿色,容易,低成本和可伸缩的液体剥离方法合成FL-HBN。通过XRD,SEM,TEM和AFM(原子力显微镜)的晶体结构,表面形态和FL-HBN的晶体结构,表面形态和比表面积。结果证实,从剥离过程中成功地获得了厚度为〜4nm的Fl-HbN。此外,我们将原始的H-BN和FL-HBN引入有机硅中,以不同的比例来研究它们的热性能。激光闪光分析的结果表明硅/ FL-HBN复合材料比硅氧烷/ H-BN复合材料更高的导热率。随着30重量%的最佳载量含量。%FL-HBN含量,复合材料的导热率可以增强至230%,其高于硅氧烷/ H-BN(189%)。这些结果表明,喷射空化是获得少量层状六边形氮化物的有效和迅速的方式,其能够有效地提高硅氧烷复合材料的导热率。

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