Carbon-nanotube-based RF components with multiple applications

P. Franck, C. C. Yap, C. Brun, S. Pacchini, W. Chow, H. Li, D. Baillargeat, B. Tay
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引用次数: 1

Abstract

Owing to their extraordinary electronic properties, carbon nanotubes (CNTs), as a building block, promise superior performance and novel functionalities for microwave electronic components. This review presents some of the last results obtained in three different fields of this fast moving area - antennas, interconnects and sensors. Electromagnetic and analytical models are used to evaluate and optimize component performance. Synergy between fabrication and simulation techniques allows the practical design of bundled-CNTs-based components. Opportunities are discussed from the fabrication of CNT materials (PECVD, CVD) to their implementation in components and systems by specific technological processes (Photolithography, Flip-Chip, Inkjet printing, etc.). Actual performance of fabricated prototypes and expected improvement based on the CNTs implementation are presented.
具有多种应用的基于碳纳米管的射频元件
由于碳纳米管(CNTs)具有非凡的电子特性,因此其作为微波电子元件的基础材料具有优异的性能和新颖的功能。本文综述了在这一快速发展领域的三个不同领域——天线、互连和传感器——取得的一些最新成果。电磁和分析模型用于评估和优化组件性能。制造和模拟技术之间的协同作用允许基于碳纳米管的捆绑组件的实际设计。讨论了从碳纳米管材料(PECVD, CVD)的制造到通过特定技术过程(光刻,倒装芯片,喷墨打印等)在组件和系统中实现的机会。介绍了制造原型的实际性能和基于碳纳米管实施的预期改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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