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Electrohydrodynamic Generation and Delivery of Monodisperse Picoliter Droplets Using a Poly(dimethylsiloxane) Microchip

机译:使用聚(二甲基硅氧烷)微芯片的电流体动力学产生和传递单分散皮升液滴

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We developed a drop-on-demand microdroplet generator for the discrete dispensing of biosamples into a bioanalytical unit. This disposable PDMS microfluidic device can generate monodisperse droplets of picoliter volume directly out of a plane sidewall of the microfluidic chip by an electrohydrodynamic mechanism. The droplet generation was accomplished without using either an inserted capillary or a monolithically built-in tip. The minimum droplet volume was approx4 pL, and the droplet generation was repeatable and stable for at least 30 min, with a typical variation of less than 2.0percent of drop size. The Taylor cone, which is usually observed in electrospray, was suppressed by controlling the surface wetting property of the PDMS device as well as the surface tension of the sample liquids. A modification of the channel geometry right before the opening of the microchannel also enhanced the continuous droplet generation without applying any external pumping. A simple numerical simulation of the droplet generation verified the importance of controlling the surface wetting conditions for the droplet formation. Our microdroplet generator can be effectively applied to a direct interface of a microfluidic chip to a biosensing unit, such as AMS, MALDI-MS or protein microarray-type biochips.
机译:我们开发了按需滴滴微滴发生器,用于将生物样品离散分配到生物分析单元中。这种一次性的PDMS微流体装置可以通过电动流体力学原理直接从微流体芯片的平面侧壁产生皮升体积的单分散液滴。无需使用插入的毛细管或整体内置的吸头即可完成液滴的产生。最小液滴体积约为4 pL,液滴的产生可重复且稳定至少30分钟,典型变化小于液滴尺寸的2.0%。通过控制PDMS装置的表面润湿性以及样品液体的表面张力,可以抑制通常在电喷雾中发现的泰勒锥。在微通道打开之前对通道几何形状的修改还增强了连续液滴的产生,而无需施加任何外部泵送。液滴生成的简单数值模拟证明了控制液滴形成的表面润湿条件的重要性。我们的微滴发生器可以有效地应用于微流控芯片与生物传感单元(例如AMS,MALDI-MS或蛋白质微阵列型生物芯片)的直接接口。

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