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聚偏氟乙烯/钛酸钡/碳化硅三相纳米复合材料具有较大的介电常数和较高的热导率。

Large dielectric constant and high thermal conductivity in poly(vinylidene fluoride)/barium titanate/silicon carbide three-phase nanocomposites.

机构信息

Department of Polymer Science and Engineering and Shanghai Key Lab of Electrical Insulation and Thermal Aging, Shanghai Jiao Tong University, Shanghai, China.

出版信息

ACS Appl Mater Interfaces. 2011 Nov;3(11):4396-403. doi: 10.1021/am2010459. Epub 2011 Nov 1.

Abstract

Dielectric polymer composites with high dielectric constants and high thermal conductivity have many potential applications in modern electronic and electrical industry. In this study, three-phase composites comprising poly(vinylidene fluoride) (PVDF), barium titanate (BT) nanoparticles, and β-silicon carbide (β-SiC) whiskers were prepared. The superiority of this method is that, when compared with the two-phase PVDF/BT composites, three-phase composites not only show significantly increased dielectric constants but also have higher thermal conductivity. Our results show that the addition of 17.5 vol % β-SiC whiskers increases the dielectric constants of PVDF/BT nanocomposites from 39 to 325 at 1000 Hz, while the addition of 20.0 vol % β-SiC whiskers increases the thermal conductivity of PVDF/BT nanocomposites from 1.05 to 1.68 W m(-1) K(-1) at 25 °C. PVDF/β-SiC composites were also prepared for comparative research. It was found that PVDF/BT/β-SiC composites show much higher dielectric constants in comparison with the PVDF/β-SiC composites within 17.5 vol % β-SiC. The PVDF/β-SiC composites show dielectric constants comparable to those of the three-phase composites only when the β-SiC volume fraction is 20.0%, whereas the dielectric loss of the PVDF/β-SiC composites was much higher than that of the three-phase composites. The frequency dependence of the dielectric property for the composites was investigated by using broad-band (10(-2)-10(6) Hz) dielectric spectroscopy.

摘要

具有高介电常数和高热导率的介电聚合物复合材料在现代电子和电气工业中有许多潜在的应用。在这项研究中,制备了包含聚偏二氟乙烯(PVDF)、钛酸钡(BT)纳米粒子和β-碳化硅(β-SiC)晶须的三相复合材料。这种方法的优势在于,与两相 PVDF/BT 复合材料相比,三相复合材料不仅表现出明显增加的介电常数,而且具有更高的热导率。我们的结果表明,添加 17.5 体积%的β-SiC 晶须可将 PVDF/BT 纳米复合材料的介电常数从 1000 Hz 时的 39 增加到 325,而添加 20.0 体积%的β-SiC 晶须可将 PVDF/BT 纳米复合材料的热导率从 25°C 时的 1.05 增加到 1.68 W m(-1) K(-1)。还制备了 PVDF/β-SiC 复合材料进行比较研究。发现与 17.5 体积%β-SiC 相比,PVDF/BT/β-SiC 复合材料在 17.5 体积%β-SiC 范围内表现出更高的介电常数。只有当β-SiC 体积分数为 20.0%时,PVDF/β-SiC 复合材料的介电常数才与三相复合材料相当,而 PVDF/β-SiC 复合材料的介电损耗却远高于三相复合材料。通过使用宽带(10(-2)-10(6) Hz)介电谱研究了复合材料的介电性能的频率依赖性。

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