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首页> 外文期刊>Journal of Micromechanics and Microengineering >An on-chip air-bursting detonator for driving fluids on disposable lab-on-a-chip systems
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An on-chip air-bursting detonator for driving fluids on disposable lab-on-a-chip systems

机译:芯片上的空气爆管雷管,用于在一次性芯片实验室系统上驱动流体

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摘要

A new fluidic delivery system for driving fluids on disposable lab-on-a-chip systems using an air-bursting detonator device has been designed, fabricated and successfully characterized in this paper for driving fluid on disposable lab-on-a-chip or point-of-care testing. The disposable air-bursting detonator device uses a pressurized gas source, sealed in a microcavity with a thermoplastic membrane. A microheater positioned on the thermoplastic membrane is used as an electro-thermal heater to melt the sealing membrane thus releasing the pressurized gas to the integrated microfluidic system. The pressurized gas drives liquid samples through designated microfluidic channels. Both air pressure and detonating temperature are adjustable to get the desired driving pressure responses. A 40 mW electrical power pulse applied to the microheater for 700 ms resulted in releasing 650 mu J of stored pneumatic energy in the microcavity and driving a 500 nl sample through the microchannels of an integrated test system. The dynamic pressure response of the fabricated air-bursting detonator has been fully simulated and characterized. Due to its compact structure and fast response, the air-bursting detonator device will be a promising alternative power source to drive fluid samples in disposable lab-on-a-chip systems or portable clinical diagnostic kits.
机译:本文设计,制造并成功设计了一种新的流体输送系统,该系统可使用空气爆管雷管装置在一次性芯片实验室系统上驱动流体,并能够在一次性芯片实验室或点上驱动流体护理测试。一次性吹气雷管装置使用加压气体源,该气体源用热塑性膜密封在微腔中。放置在热塑性膜片上的微型加热器用作电热加热器,以熔化密封膜,从而将加压气体释放到集成的微流体系统中。加压气体通过指定的微流体通道驱动液体样品。气压和爆震温度均可调节,以获得所需的驱动压力响应。在微型加热器上施加40 mW的电源脉冲700 ms,从而释放了650μJ的微腔中存储的气动能量,并驱动500 nl样品通过集成测试系统的微通道。已完全模拟并表征了制造的空气爆管雷管的动压力响应。由于其紧凑的结构和快速的响应,该气爆雷管装置将成为一种有前途的替代动力源,可用于驱动一次性芯片实验室系统或便携式临床诊断套件中的流体样品。

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