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On-demand sample injection: combining acoustic actuation with a tear-drop shaped nozzle to generate droplets with precise spatial and temporal control

机译:按需样品喷射:将声音驱动与撕裂形状喷嘴相结合,产生具有精确空间和时间控制的液滴

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摘要

An on-demand droplet injection method for controlled delivery of nanolitre-volume liquid samples to scientific instruments for subsequent analysis is presented. We employ pulsed focussed surface acoustic waves (SAW) to eject droplets from an enclosed microfluidic channel into an open environment. The 3D position of individual droplets and their time of arrival can be precisely controlled to within 61 mu s in a 500 mu m square target region 40 mu m wide. The continuous ejection rate of 16 000 droplets per second can be tuned to produce pulsed trains of droplets from 0 up to 357 Hz. The main benefit of this technique is its ease of integration with complex microfluidic processing steps, such as droplet merging, sorting, and encapsulation, prior to sample delivery. With its ability to precisely deliver a small quantity of fluid to a pre-defined location this technology is applicable in X-ray based molecular studies, including the rapidly expanding field of X-ray free electron lasers. Fabrication procedures for this device, the underlying forcing mechanism, the role of nozzle design, and demonstration of the performance in both continuous and on-demand modes are reported.
机译:提出了一种用于控制纳米体积液体样品对科学仪器进行后续分析的按需液滴喷射方法。我们采用脉冲聚焦的表面声波(SAW)将液滴从封闭的微流体通道喷射到开放环境中。单个液滴的3D位置及其到达时间可以精确地控制在500 mu m平方瞄准区域40μm宽的500 mu m平方区域内的61亩内。可以调整每秒16 000滴的连续喷射率,以产生从0到357Hz的液滴的脉冲列车。该技术的主要好处是其易于与复杂的微流体处理步骤集成,例如在样品递送之前液滴合并,分选和封装。凭借精确地将少量流体精确地提供给预定义的位置,该技术适用于基于X射线的分子研究,包括X射线自由激光器的快速膨胀场。报道了该装置的制造程序,潜在的强迫机构,喷嘴设计的作用以及连续和按需模式的性能的演示。

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