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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Low-temperature sintering Graphene/CaCu3Ti4O12 nanocomposites with tunable negative permittivity
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Low-temperature sintering Graphene/CaCu3Ti4O12 nanocomposites with tunable negative permittivity

机译:低温烧结石墨烯/ CACU3TI4O12纳米复合材料,可调节负介电常数

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Since negative permittivity demonstrated in metamaterials, how to effectively tune negative permittivity still the challenge to satisfy practical applications. Meta-composites could provide alternative routes to tunable negative permittivity. In this paper, Graphene/CaCu3Ti4O12 (GR/CCTO) meta-composites with different GR content were fabricated by low-temperature pressureless sintering. Microstructures and compositions of GR/CCTO were investigated in detail. The electrical and dielectric properties of GR/CCTO nanocomposites were investigated at 10 kHz - 1 MHz and 20 MHz - 1 GHz region respectively. AC conductivity spectra showed different variation trends which were explained by Jonscher's power law or Drude model, indicating conductive mechanism transformation from hopping conduction to metal-like conduction. Lorentz-type and/or Drude-type negative permittivity behaviors were observed at radio-frequency region. Tunable negative permittivity were realized by changing GR content in GR/CCTO nanocomposites. Correspondence between inductive characteristic and negative permittivity was manifested by equivalent circuit analysis of impedance response of GR/CCTO composites. This work not only presents novel routes to tune negative permittivity, but also further clarifies negative permittivity generation mechanism, which will greatly facilitate applications in impedance matching, electromagnetic shielding and multi-layer high-k capacitors etc. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于超材料中所示的负介电常数,如何有效地调整负介电常数仍然是满足实际应用的挑战。元复合材料可以提供可调谐负介电常数的替代路线。本文通过低温无压烧结制造具有不同GR含量的石墨烯/ CACU3TI4O12(GR / CCTO)元复合材料。详细研究了GR / CCTO的微观结构和组合物。在10kHz - 1MHz和20MHz -1GHz区域中研究了GR / CCTO纳米复合材料的电气和介电性能。交流电导率光谱显示出不同的变化趋势,该趋势由Jonscher的权力法或博德模型解释,表明从跳跃传导到金属状传导的导电机构变换。在射频区域观察到洛伦兹型和/或博德型负介电常数行为。通过在GR / CCTO纳米复合材料中改变GR含量来实现可调谐的负介电常数。通过对GR / CCTO复合材料的阻抗响应的等效电路分析表现出感应特性和负介电常数的对应关系。这项工作不仅介绍了对阴性介电常数的新颖路线,而且还阐明了负介电常数产生机制,这将极大地促进阻抗匹配,电磁屏蔽和多层高k电容器等的应用。(c)2018 Elsevier BV所有权利预订的。

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