微流控
毛细管作用
电磁阀
微通道
抽吸
材料科学
螺线管
体积流量
流量控制(数据)
可控性
流量(数学)
机械工程
机械
工程类
纳米技术
复合材料
电信
物理
数学
应用数学
作者
Qiang Zhang,Peiran Zhang,Yetian Su,Chunbo Mou,Teng Zhou,Menglong Yang,Jian Xu,Bo Ma
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2014-09-02
卷期号:14 (24): 4599-4603
被引量:22
摘要
A simple, low-cost and on-demand microfluidic flow controlling platform was developed based on a unique capillary-tuned solenoid microvalve suction effect without any outer pressure source. The suction effect was innovatively employed as a stable and controllable driving force for the manipulation of the microfluidic system by connecting a piece of capillary between the microvalve and the microfluidic chip, which caused significant hydrodynamic resistance differences among the solenoid valve ports and changed the flowing mode inside the valve. The volume of sucked liquid could be controlled from microliters even down to picoliters either by decreasing the valve energized duration (from a maximum energized duration to the valve response time of 20 ms) or by increasing the inserted capillary length (i.e., its hydrodynamic resistance). Several important microfluidic unit operations such as cell/droplet sorting and on-demand size-controllable droplet generation have been demonstrated on the developed platform and both simulations and experiments confirmed that this platform has good controllability and stability.
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