利用金属纳米颗粒的库仑阻断效应控制高k聚合物复合材料的介电损耗

Jiongxin Lu, K. Moon, Jianwen Xu, C. Wong
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引用次数: 7

摘要

嵌入式无源应用的新型材料需求巨大而迫切。高介电常数和低介电损耗是嵌入式电容器最重要的介电材料前提。结果表明,炭黑/环氧复合材料具有超高K值(> 13000)。然而,高介电损耗是该材料体系的关键问题。本文介绍了一种利用金属纳米粒子的量子效应库仑封锁效应来控制介电复合材料介电损耗的新方法。原位形成的银纳米粒子的加入使K值增加,耗散系数降低。界面极化基复合材料的介电常数显著增加是由于扩展界面上电荷的堆积。在含银纳米粒子的高介电常数复合材料中,由于库仑阻断效应,介质损耗明显降低。采用透射电子显微镜(TEM)、扫描电子显微镜(SEM)和x射线衍射仪(XRD)对Ag/环氧复合材料和Ag/CB/环氧复合材料的微观结构进行表征,探讨复合材料的结构和形貌与介电性能的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dielectric loss control of high-k polymer composites by Coulomb blockade effects of metal nanoparticles for embedded capacitor applications
Novel materials for embedded passive applications are in great and urgent demands. High dielectric constant and low dielectric loss are the most important dielectric materials prerequisites for embedded capacitors. It was demonstrated by the authors' that the carbon black (CB)/epoxy composites achieved ultra high K (>13,000). High dielectric loss, however, is the key issue of this material system. In this presentation, a novel method was introduced to control the dielectric loss of dielectric composites by taking advantage of the Coulomb blockade effect, the well-known quantum effect of metal nanoparticles. The increased K value and decreased dissipation factor were observed by the incorporation of in-situ formed Ag nanoparticles. The remarkably increased dielectric constant of the interfacial polarization-based composites is due to the piling of charges at the extended interface. The reduced dielectric loss was observed in the high dielectric constant composite materials containing silver (Ag) nanoparticles in virtue of Coulomb blockade effect. Transmission electronic microscopy (TEM), scanning electron microscopy (SEM) and X-ray diffraction (XRD) were used to characterize the microstructure of the Ag/epoxy composites and the Ag/CB/epoxy composites in order to correlate the structure and morphology of the composites with the dielectric properties.
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