用于微电子和微波可调谐器件的碳纳米管墨水电路模型

R. De Paolis, S. Pacchini, F. Coccetti, G. Monti, L. Tarricone, M. Tentzeris, R. Plana
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引用次数: 16

摘要

本文提出了一种碳纳米管(CNT)网络的电学模型,该模型可以使用喷墨转移印刷进行图像化。双壁碳纳米管(DWNTs)“喷墨”悬浮液沉积在共面波导测试结构中线切割出的可变长度间隙中。通过对线输入阻抗和散射参数的测量,验证了该模型的有效性。结果表明,通过作用于间隙大小和碳纳米管油墨层数,测试结构的直流电阻和谐振频率可以任意选择(分别从几十个kΩ到几十个Ω和几MHz到几十MHz)。因此,通过利用建议的等效电路模型,碳纳米管油墨沉积工艺可以被认为是具有定制行为(即可变电阻,匹配负载网络,滤波器和谐振器)的微电子和微波器件设计的有希望的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Circuit model of carbon-nanotube inks for microelectronic and microwave tunable devices
This paper proposes an electrical model of carbon-nanotube (CNT) networks, that can be patterned using inkjet transfer printing. The Double-Walled carbon Nanotubes (DWNTs) “inkjet”-able suspension was deposited in gaps of variable lengths cut out of the central line of the coplanar waveguide test structure. The proposed model was validated through measurements of the line input impedance and of the scattering parameters. The obtained results demonstrate that, by acting on the gap size and on the number of CNT ink layers, both the DC resistance and the resonance frequency of the test structure can be selected ad hoc (from tens of kΩ to tens of Ω and from few MHz to tens of MHz, respectively). Therefore, by exploiting the suggested equivalent circuit model, the CNT ink deposition process can be considered as a promising candidate for the design of microelectronic and microwave devices with customized behavior (i.e., variable resistors, matching load networks, filters, and resonators).
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