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Oscillating dispersed-phase co-flow microfluidic droplet generation: Multi-droplet size effect

机译:振荡的分散相同流微流液滴产生:多液滴尺寸效应

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摘要

Controllable generation of microdroplets at desired sizes and throughputs is important in many applications. Many biological assays require size-optimized droplets for effective encapsulation of analytes and reagents. To perform size optimization, different-size droplets must be generated from identical sources of samples to prevent potential cross-sample variations or other sources of error. In this paper, we introduce a novel alteration of the co-flow droplet generation technique to achieve multi-size generation of monodispersed droplets. Using a custom-made mechanism, we oscillate the disperse-phase (d-phase) flow nozzle perpendicular to the continuous phase (c-phase) flow in a co-flow channel. Oscillation of the d-phase nozzle introduces an additional lateral drag force to the growing droplets while exposing them to various levels of axial drag owing to the parabolic velocity distribution of the c-phase flow. Superimposing both effects results in simultaneous and repeatable generation of monodispersed droplets with different sizes. The effect of nozzle oscillation frequency (f = 0–15 Hz) on droplet generation at different d-phase (Qd = 0.05, 0.10, and 0.50 ml/min) and c-phase (Qc = 2, 5, and 10 ml/min) flow rates was studied. A wide range of monodispersed droplets (4nl–4 μl) were generated using this method. Droplet sizes were directly proportional to the We number and inversely proportional to the Ca number and oscillation frequency. Our technique is promising for applications such as aqueous two-phase systems, where due to inherently low interfacial tension, the d-phase flow forms a long stable jet which can be broken into droplets using the additional oscillatory drag in our device.
机译:在许多应用中,以所需的大小和通量可控地产生微滴很重要。许多生物学测定需要大小优化的液滴才能有效地封装分析物和试剂。为了执行尺寸优化,必须从相同的样本源中生成不同大小的液滴,以防止潜在的交叉样本差异或其他误差源。在本文中,我们介绍了一种新的同流液滴产生技术的变化,以实现单分散液滴的多尺寸产生。使用定制机制,我们使分散相(d相)流喷嘴垂直于同流通道中的连续相(c相)流振荡。 d相喷嘴的振荡会给正在生长的液滴带来额外的横向阻力,同时由于c相流的抛物线速度分布,使液滴暴露于各种水平的轴向阻力。叠加这两种效果可同时重复生成具有不同大小的单分散液滴。喷嘴振荡频率(f = 0–15 Hz)对不同d相(Qd = 0.05、0.10和0.50 ml / min)和c相(Qc nozzle = 2、5和10 ml / min)液滴产生的影响分钟)的流量进行了研究。使用这种方法可以产生各种各样的单分散液滴(4nl–4μl)。液滴大小与We数成正比,与Ca数和振荡频率成反比。我们的技术在水性两相系统等应用中很有前途,由于固有的低界面张力,d相流形成了长久稳定的射流,利用我们设备中的附加振荡阻力可以将其破碎成液滴。

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