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可调谐微纳机械谐振器

Tunable micro- and nanomechanical resonators.

作者信息

Zhang Wen-Ming, Hu Kai-Ming, Peng Zhi-Ke, Meng Guang

机构信息

State Key Laboratory of Mechanical System and Vibration, School of Mechanical Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.

出版信息

Sensors (Basel). 2015 Oct 16;15(10):26478-566. doi: 10.3390/s151026478.

Abstract

Advances in micro- and nanofabrication technologies have enabled the development of novel micro- and nanomechanical resonators which have attracted significant attention due to their fascinating physical properties and growing potential applications. In this review, we have presented a brief overview of the resonance behavior and frequency tuning principles by varying either the mass or the stiffness of resonators. The progress in micro- and nanomechanical resonators using the tuning electrode, tuning fork, and suspended channel structures and made of graphene have been reviewed. We have also highlighted some major influencing factors such as large-amplitude effect, surface effect and fluid effect on the performances of resonators. More specifically, we have addressed the effects of axial stress/strain, residual surface stress and adsorption-induced surface stress on the sensing and detection applications and discussed the current challenges. We have significantly focused on the active and passive frequency tuning methods and techniques for micro- and nanomechanical resonator applications. On one hand, we have comprehensively evaluated the advantages and disadvantages of each strategy, including active methods such as electrothermal, electrostatic, piezoelectrical, dielectric, magnetomotive, photothermal, mode-coupling as well as tension-based tuning mechanisms, and passive techniques such as post-fabrication and post-packaging tuning processes. On the other hand, the tuning capability and challenges to integrate reliable and customizable frequency tuning methods have been addressed. We have additionally concluded with a discussion of important future directions for further tunable micro- and nanomechanical resonators.

摘要

微纳制造技术的进步推动了新型微纳机械谐振器的发展,这些谐振器因其迷人的物理特性和不断增长的潜在应用而备受关注。在本综述中,我们简要概述了通过改变谐振器的质量或刚度来实现的谐振行为和频率调谐原理。本文还综述了使用调谐电极、音叉和悬浮通道结构以及由石墨烯制成的微纳机械谐振器的研究进展。我们还强调了一些主要影响因素,如大振幅效应、表面效应和流体效应,对谐振器性能的影响。更具体地说,我们讨论了轴向应力/应变、残余表面应力和吸附诱导表面应力对传感和检测应用的影响,并探讨了当前面临的挑战。我们重点关注了微纳机械谐振器应用中的主动和被动频率调谐方法及技术。一方面,我们全面评估了每种策略的优缺点,包括主动方法,如电热、静电、压电、介电、磁动、光热、模式耦合以及基于张力的调谐机制,以及被动技术,如制造后和封装后调谐工艺。另一方面,我们讨论了集成可靠且可定制的频率调谐方法的调谐能力和挑战。此外,我们还讨论了未来可进一步调谐的微纳机械谐振器的重要发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4a8/4634492/d37c954ff57c/sensors-15-26478-g001.jpg

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