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导波层在声表面波器件中的实现:综述。

Implementation of guiding layers of surface acoustic wave devices: A review.

机构信息

Laboratory of Biosensing and MicroMechatronics, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu, Sichuan 610031, PR China.

Laboratory of Biosensing and MicroMechatronics, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu, Sichuan 610031, PR China.

出版信息

Biosens Bioelectron. 2018 Jan 15;99:500-512. doi: 10.1016/j.bios.2017.07.060. Epub 2017 Jul 29.

Abstract

The purpose of overviewing research and development status of dependable, efficient, and portable and miniaturized surface acoustic wave (SAW) is to propose practical devices for biosensing and medical diagnosis. SAW Love-mode sensors fortunately have a great deal of attention during last two decades. Several periodic structure models of SAW devices were reviewed, especially interdigital transducers (IDTs), wave guiding layers, patterned-ZnO. SAW devices based on such periodic wave guiding layers and patterned-ZnO were demonstrated with superior performance, much better than conventional SAW devices. Both 2D and 3D models of phononic-crystal-based SAW devices can be respectively fabricated by an array of periodic cylindrical holes and pillars, which allowed SAW devices to have both higher Q-factor and GHz-level frequency. Ring waveguide and spherical SAW devices would have potential applications and implementation in biosensing. ZnO is one of attractive guiding-layer materials. Its nanostructures, such as nanowires, nanorods and nanofibers provided with excellent properties, will make nanoscaled SAW devices contribute to be much more sensitive in biosensors. A range of applications based on SAW and ZnO guiding-layer would be therefore expected among of immunochemical analysis, in-situ virus or bacteria determination, microfluidic automation, and cell manipulation.

摘要

概述可靠、高效、便携和小型化声表面波(SAW)的研究和发展现状,旨在为生物传感和医学诊断提出实用的设备。SAW Love 模式传感器在过去二十年中受到了极大的关注。本文回顾了几种 SAW 器件的周期性结构模型,特别是叉指换能器(IDT)、导波层、图案化 ZnO。基于这种周期性导波层和图案化 ZnO 的 SAW 器件表现出了优异的性能,比传统的 SAW 器件要好得多。基于声子晶体的 SAW 器件的 2D 和 3D 模型可以分别通过周期性圆柱孔和圆柱阵列来制造,这使得 SAW 器件具有更高的 Q 因子和 GHz 级的频率。环形波导和球形 SAW 器件将在生物传感中有潜在的应用和实现。ZnO 是一种有吸引力的导波层材料。其纳米结构,如纳米线、纳米棒和纳米纤维,具有优异的性能,将使纳米级的 SAW 器件在生物传感器中更加敏感。因此,基于 SAW 和 ZnO 导波层的一系列应用有望在免疫化学分析、原位病毒或细菌测定、微流自动化和细胞操作中实现。

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