微流控
分散性
注射器驱动器
流量(数学)
纳米技术
工作(物理)
流动聚焦
体积流量
材料科学
机械
物理
机械工程
工程类
注射器
热力学
高分子化学
作者
Ali Kalantarifard,Elnaz Alizadeh‐Haghighi,Çağlar Elbüken
标识
DOI:10.1016/j.ces.2022.117947
摘要
Despite the importance of droplet monodispersity, a universal methodology for high monodispersity droplet generation does not exist yet. We have recently demonstrated that unlike the conventional method of droplet generation, applying an identical pressure from a single source makes the microfluidic droplet system immune to the external fluctuations that originate from the imperfection of the flow source. In this work, we show that our method is universal and applicable to other common microfluidic devices and flow sources. We applied this method to flow-focusing and coflow devices that are commonly used for high-frequency microdroplet generation. In addition to the pressure pump, we used a syringe pump to show that our method is applicable to flow rate controllable systems as well. We compared the monodispersity of droplets formed by the conventional methods and the novel method explained in this work.
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