材料科学
氮化硼
纳米复合材料
石墨烯
电介质
热导率
复合材料
纳米片
碳纳米管
氧化物
环氧树脂
纳米技术
光电子学
冶金
作者
Chi Zhang,Rongjin Huang,Yongguang Wang,Zihua Wu,Hua Zhang,Yong Li,Wei Wang,Chuanjun Huang,Laifeng Li
标识
DOI:10.1021/acsami.9b15993
摘要
Thermally conductive polymeric composites are highly promising in current energy devices such as light-emitting diodes, integrated circuits, and solar cells to achieve appropriate thermal management. However, the introduction of traditional thermoconductive fillers into a polymer usually results in low thermal conductivity enhancement. Here, an ideal dielectric epoxy nanocomposite with ultrahigh thermal conductivity is successfully fabricated using three-dimensional interconnected boron nitride nanotube reinforced graphene oxide nanosheet (3D-BNNT-GONS) aerogels as fillers. The nanocomposite exhibits a nearly 20-fold increase in thermal conductivity with only 11.6 vol % loading fraction. Meanwhile, the nanocomposite possesses excellent insulation performance, including low dielectric constant, low dielectric loss, and high breakdown strength. A heating and cooling process reveals that the nanocomposite has a fast response of surface temperature, indicating high thermal management capability.
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