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Resonant frequency of gold/polycarbonate hybrid nano resonators fabricated on plastics via nano-transfer printing

机译:通过纳米转移印刷在塑料上制造的金/聚碳酸酯混合纳米谐振器的谐振频率

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摘要

We report the fabrication of gold/polycarbonate (Au/PC) hybrid nano resonators on plastic substrates through a nano-transfer printing (nTP) technique, and the parametric studies of the resonant frequency of the resulting hybrid nano resonators. nTP is a nanofabrication technique that involves an assembly process by which a printable layer can be transferred from a transfer substrate to a device substrate. In this article, we applied nTP to fabricate Au/PC hybrid nano resonators on a PC substrate. When an AC voltage is applied, the nano resonator can be mechanically excited when the AC frequency reaches the resonant frequency of the nano resonator. We then performed systematic parametric studies to identify the parameters that govern the resonant frequency of the nano resonators, using finite element method. The quantitative results for a wide range of materials and geometries offer vital guidance to design hybrid nano resonators with a tunable resonant frequency in a range of more than three orders of magnitude (e.g., 10 KHz-100 MHz). Such nano resonators could find their potential applications in nano electromechanical devices. Fabricating hybrid nano resonators via nTP further demonstrates nTP as a potential fabrication technique to enable a low-cost and scalable roll-to-roll printing process of nanodevices.
机译:我们报告通过纳米转移印刷(nTP)技术在塑料基板上制造金/聚碳酸酯(Au / PC)混合纳米谐振器,并对所得混合纳米谐振器的谐振频率进行参数研究。 nTP是一种纳米制造技术,涉及组装过程,通过该过程可将可印刷层从转移基板转移到设备基板。在本文中,我们应用nTP在PC基板上制造Au / PC混合纳米谐振器。当施加交流电压时,当交流频率达到纳米谐振器的谐振频率时,可以对纳米谐振器进行机械激励。然后,我们使用有限元方法进行了系统的参数研究,以识别控制纳米谐振器谐振频率的参数。各种材料和几何形状的定量结果为设计混合纳米谐振器提供了重要的指导,该谐振器的可调谐振频率范围超过三个数量级(例如10 KHz-100 MHz)。这样的纳米谐振器可以发现其在纳米机电装置中的潜在应用。通过nTP制造混合纳米谐振器进一步证明了nTP是一种潜在的制造技术,可以实现纳米器件的低成本和可扩展的卷对卷印刷工艺。

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