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Effective permittivity extraction of dielectric nano-powder and nano-composite materials: Effects of packing densities and mixture compositions

机译:介电纳米粉和纳米复合材料的有效介电萃取:包装密度和混合组合物的影响

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This paper investigates the electrical characteristics of nano-particle-based pulverized materials. A measurement setup is developed to extract the electrical properties of the composite material in its powder form. Numerical simulations are also carried out to examine and analyze the effects of embedded metallic particles in a dielectric host medium. The experimental results present the role of the packing density of the powder on the dielectric constant. The developed techniques are applied to extract the electrical properties of nano-dielectric particles mixed with nano/micro-metallic particles; examples of these composites include micro particles of copper are mixed with dry powder of nano particles of alumina and a mixture of semiconducting and metallic carbon nanotubes. The presented results show that the real part of the dielectric constant may be considerably increased with the increase of conducting nano-particles ratio. The percolation theory is used to provide a physical explanation of the observed enhancement of the effective permittivity below percolation threshold.
机译:本文研究了纳米粒子粉碎材料的电气特性。开发测量设置以在其粉末形式中提取复合材料的电性能。还进行了数值模拟以检查和分析介电宿主介质中嵌入金属颗粒的效果。实验结果呈现了粉末填料密度对介电常数的作用。施加开发的技术以提取与纳米/微金属颗粒混合的纳米介电颗粒的电性能;这些复合材料的实例包括微颗粒与氧化铝的纳米颗粒的干粉和半导体和金属碳纳米管的混合物混合。所提出的结果表明,随着导电纳米颗粒比的增加,介电常数的实际部分可以显着增加。渗透理论用于提供观察到的提高渗透阈值的有效介质的物理解释。

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