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首页> 外文期刊>Microfluidics and nanofluidics >Piezo-driven acoustic streaming in an electrowetting-on-dielectric digital microfluidics device
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Piezo-driven acoustic streaming in an electrowetting-on-dielectric digital microfluidics device

机译:电介质上电润湿数字微流控设备中的压电驱动声流

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摘要

We report the integration of a lead zirconate titanate, Pb[Zr-x Ti1-xO3] (PZT), piezoelectric transducer disk into the top plate of an otherwise conventional electrowetting- on-dielectric (EWD) digital microfluidics device to demonstrate on-demand induction of circulating fluid flow within single 200 nL droplets. Microparticle image velocimetry was used to measure in-plane velocity distributions for PZT excitation voltages that ranged from 0 to 50 V RMS. Intra-droplet streaming velocities in excess of 2.0 mm.s(-1) were observed without droplet breakup or damage to the EWD device layer. Additionally, we found median intra-droplet streaming velocity to depend quadratically on PZT excitation voltage up to the stress limit of the interfacial boundary. Our approach offers an alternative device architecture for active micromixing strategies in EWD digital microfluidics laboratory-on-chip systems.
机译:我们报告了将锆酸钛酸铅,Pb [Zr-x Ti1-xO3](PZT)压电换能器盘集成到其他常规电润湿电介质(EWD)数字微流控设备的顶板上,以证明按需诱导单个200 nL小滴内循环流体的流动。微粒图像测速仪用于测量PZT激发电压在0至50 V RMS范围内的面内速度分布。观察到液滴内流速度超过2.0 mm.s(-1),而没有液滴破裂或损坏EWD设备层。此外,我们发现液滴内部流的中值速度与PZT激发电压呈二次关系,直至界面边界的应力极限。我们的方法为EWD数字微流控芯片实验室系统中的主动微混合策略提供了另一种设备架构。

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