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首页> 外文期刊>Lab on a chip >Submicron separation of microspheres via travelling surface acoustic waves
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Submicron separation of microspheres via travelling surface acoustic waves

机译:通过传播的表面声波对微球进行亚微米分离

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Submicron separation is the segregation of particles having a diameter difference of less than one micrometre. We present an acoustofluidic particle separator with submicron separation resolution to study the continuous, label-free, and contactless separation of polystyrene (PS) particles based on their acoustofluidic parameters such as size, density, compressibility and shape. In this work, the submicron separation of PS microspheres, having a marginal size difference, is achieved inside a polydimethylsiloxane (PDMS) microfluidic channel via travelling surface acoustic waves (TSAWs). The TSAWs of different frequencies (200, 192, 155, and 129 MHz), propagating normal to the fluid flow direction inside the PDMS microchannel, realized continuous separation of particles with a diameter difference as low as 200 nm. A theoretical framework based on the rigid and elastic theories is presented to support the experimental results.
机译:亚微米分离是指直径差小于一微米的颗粒分离。我们提出了一种亚微米分离分辨率的声流体颗粒分离器,以基于其声流体参数(例如大小,密度,可压缩性和形状)研究聚苯乙烯(PS)颗粒的连续,无标签和无接触分离。在这项工作中,通过传播的表面声波(TSAW)在聚二甲基硅氧烷(PDMS)微流体通道内部实现了具有边际尺寸差异的PS微球的亚微米分离。垂直于PDMS微通道内部流体流动方向传播的不同频率(200、192、155和129 MHz)的TSAW实现了直径差低至200 nm的颗粒的连续分离。提出了基于刚性和弹性理论的理论框架来支持实验结果。

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