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Electrical Permittivity and Conductivity of a Graphene Nanoplatelet Contact in the Microwave Range

机译:微波范围内石墨烯纳米片接触的电导率和电导率

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摘要

This paper investigates the electrical properties in the microwave range of a contact made by graphene nanoplatelets. The final goal is that of estimating the range of values for the equivalent electrical complex permittivity of a contact obtained by integrating low-cost graphene in the form of nanoplatelets (GNPs) into a high-frequency electrical circuit. To this end, a microstrip-like circuit is designed and realized, where the graphene nanoplatelets are self-assembled into a gap between two copper electrodes. An experimental characterization is carried out, both to study the structural properties of the nanomaterials and of the realized devices, and to measure the electromagnetic scattering parameters in the microwave range by means of a microstrip technique. A full-wave electromagnetic model is also derived and used to investigate the relationship between the measured quantities and the physical and geometrical parameters. The combined use of the experimental and simulation results allows for retrieving the values of the equivalent complex permittivity. The equivalent electrical conductivity values are found to be well below the values expected for isolated graphene nanoplatelets. The real part of the electrical relative permittivity attains values comparable to those obtained with GNP nanocomposites.
机译:本文研究了石墨烯纳米片制成的触点在微波范围内的电性能。最终目标是估算通过将低成本石墨烯以纳米片(GNP)的形式集成到高频电路中而获得的等效等效电容率。为此,设计并实现了一种微带状电路,其中石墨烯纳米片被自组装到两个铜电极之间的间隙中。进行了实验表征,以研究纳米材料和实现的器件的结构特性,并通过微带技术测量微波范围内的电磁散射参数。还导出了全波电磁模型,并将其用于研究测量量与物理和几何参数之间的关系。实验结果和模拟结果的组合使用允许检索等效复介电常数的值。发现等效电导率值远低于分离的石墨烯纳米片的预期值。相对介电常数的实部达到的值可与用GNP纳米复合材料获得的值相比。

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