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Circuit model of carbon-nanotube inks for microelectronic and microwave tunable devices

机译:用于微电子和微波可调装置的碳纳米管油墨的电路模型

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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).
机译:本文提出了碳纳米管(CNT)网络的电模型,该模型可以使用喷墨转移打印进行图案化。将双壁碳纳米管(DWNT)“可喷墨”的悬浮液沉积在从共面波导测试结构的中心线切出的可变长度的间隙中。通过测量线路输入阻抗和散射参数验证了所提出的模型。所得结果表明,通过对间隙尺寸和CNT墨层数进行操作,可以临时选择测试结构的直流电阻和谐振频率(从几十kΩ到数十Ω,很少)。兆赫至数十兆赫)。因此,通过利用建议的等效电路模型,可以将CNT墨水沉积工艺视为具有定制行为(即可变电阻器,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前途的候选者。

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