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Flexible surface acoustic wave resonators built on disposable plastic film for electronics and lab-on-a-chip applications

机译:基于一次性塑料薄膜的柔性表面声波谐振器,用于电子产品和芯片实验室应用

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Flexible electronics are a very promising technology for various applications. Several types of flexible devices have been developed, but there has been limited research on flexible electromechanical systems (MEMS). Surface acoustic wave (SAW) devices are not only an essential electronic device, but also are the building blocks for sensors and MEMS. Here we report a method of making flexible SAW devices using ZnO nanocrystals deposited on a cheap and bendable plastic film. The flexible SAW devices exhibit two wave modes - the Rayleigh and Lamb waves with resonant frequencies of 198.1?MHz and 447.0?MHz respectively, and signal amplitudes of 18?dB. The flexible devices have a high temperature coefficient of frequency, and are thus useful as sensitive temperature sensors. Moreover, strong acoustic streaming with a velocity of 3.4?cm/s and particle concentration using the SAW have been achieved, demonstrating the great potential for applications in electronics and MEMS.
机译:柔性电子是用于各种应用的非常有前途的技术。已经开发了几种类型的柔性设备,但是对柔性机电系统(MEMS)的研究有限。表面声波(SAW)设备不仅是必不可少的电子设备,而且还是传感器和MEMS的基础。在这里,我们报告了一种使用沉积在廉价且可弯曲的塑料薄膜上的ZnO纳米晶体制造柔性SAW器件的方法。灵活的声表面波器件具有两种波模式-瑞利波和兰姆波,其谐振频率分别为198.1?MHz和447.0?MHz,信号幅度为18?dB。柔性装置具有较高的频率温度系数,因此可用作敏感的温度传感器。此外,使用声表面波已经实现了3.4?cm / s的强声流传输和粒子集中,这证明了在电子和MEMS中的巨大应用潜力。

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