Fluid control in microfluidic devices using a fluid conveyance extension and an absorbent microfluidic flow modulator

微流控 流体力学 体积流量 流量控制(数据) 流量(数学) 组织液 材料科学 毛细管作用 纳米技术 机械 生物医学工程 计算机科学 工程类 物理 计算机网络 复合材料
作者
Po Ki Yuen
出处
期刊:Lab on a Chip [Royal Society of Chemistry]
卷期号:13 (9): 1737-1737 被引量:14
标识
DOI:10.1039/c3lc40956b
摘要

This article presents a simple method for controlling fluid in microfluidic devices without the need for valves or pumps. A fluid conveyance extension is fluidly coupled to the enclosed outlet chamber of a microfluidic device. After a fluid is introduced into the microfluidic device and saturates the fluid conveyance extension, a fluid flow in the microfluidic device is generated by contacting an absorbent microfluidic flow modulator with the fluid conveyance extension to absorb the fluid from the fluid conveyance extension through capillary action. Since the fluid in the microfluidic device is fluidly coupled with the fluid conveyance extension and the fluid conveyance extension is fluidly coupled with the absorbent microfluidic flow modulator, the absorption rate of the absorbent microfluidic flow modulator, which is the rate at which the absorbent microfluidic flow modulator absorbs fluid, matches the fluid flow rate in the microfluidic device. Thus, the fluid flow rate in the microfluidic device is set by the absorption rate of the absorbent microfluidic flow modulator. Sheath flow and fluid switching applications are demonstrated using this simple fluid control method without the need for valves or pumps. Also, the ability to control the fluid flow rate in the microfluidic device is demonstrated using absorbent microfluidic flow modulators with various absorbent characteristics and dimensions.
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