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首页> 外文期刊>Journal of Microelectromechanical Systems >Acoustical Streaming in Microfluidic CMUT Integrated Chip Controls the Biochemical Interaction Rate
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Acoustical Streaming in Microfluidic CMUT Integrated Chip Controls the Biochemical Interaction Rate

机译:微流CMUT集成芯片中的声流控制生化相互作用速率

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Acoustical fluid mixing and streaming in microfluidic chips enhance the detection and fluid routeing capabilities in the lab-on-chip devices. Capacitive micromachined ultrasound transducers (CMUT) are easy to integrate into a closely packed environment, and they can be simultaneously used as integrated sensors and micropumps/mixers. In this paper, particular focus is given to examininge the impact of the acoustical fluid mixing to the kinetics of biochemical interaction. CMUT interdigital transducers for 10-MHz operation in water were designed and fabricated using the surface micromachining technique. Devices use Scholte type waves for biochemical detection and acoustical streaming. They also have the ability to control the directionality of acoustical streaming by +/−90° phase shift. The impact of acoustical streaming to the liquid diffusion kinetics in the microchannel and to the kinetics of adsorption of the bovine serum albumin (BSA) to the gold surface was investigated experimentally. For microfluidic experiments, CMUTs were assembled with 100 deep microchannels. It was determined that acoustical streaming can improve the diffusion rate through the microchannel. Also, it was shown that BSA adsorption rate can be controlled by changing the phase shift during excitation of the Sholte type waves. [2016–0224]
机译:微流体芯片中的声音流体混合和流传输增强了芯片实验室设备中的检测和流体路由功能。电容式微机械超声换能器(CMUT)易于集成到紧密包装的环境中,并且可以同时用作集成传感器和微型泵/混合器。在本文中,将特别关注检查声学流体混合对生化相互作用动力学的影响。使用表面微加工技术设计和制造了用于水中10 MHz操作的CMUT叉指式换能器。设备使用Scholte型波进行生化检测和声音流传输。它们还具有通过+/- 90°相移来控制声音流的方向性的能力。实验研究了声流对微通道中液体扩散动力学和牛血清白蛋白(BSA)在金表面的吸附动力学的影响。对于微流体实验,将CMUT与100个深微通道组装在一起。已经确定,声流可以改善通过微通道的扩散速率。另外,还表明可以通过改变在霍尔特型波的激发期间的相移来控制BSA的吸附速率。 [2016-0224]

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