Rapid prototyping of integrated microfluidic devices for combined radiation detection and plasma separation

L. Convert, V. Aimez, P. Charette, R. Lecomte
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引用次数: 6

Abstract

A rapid prototyping method was developed to integrate a microfluidic plasma separation device over a Si based radiation detector. KMPR photoresist was used to produce high pressure resistant channels sealed by a glass cover. Two methods were investigated to make access holes in the cover: laser micromachining and a simplified glass wet etching process. The lab-on-chip concept where a plasma separation device is coupled to an embedded on-chip p-i-n photodiode used as a high sensitivity beta particle detector was investigated. A first detector prototype was fabricated and characterized. KMPR autofluorescence was investigated to optimize microfluidic function characterization with fluorescent beads.
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结合辐射检测和等离子体分离的集成微流控装置的快速成型
提出了一种将微流控等离子体分离装置集成在硅基辐射探测器上的快速成型方法。KMPR光刻胶用于生产由玻璃罩密封的耐高压通道。研究了激光微加工和简化玻璃湿法蚀刻两种方法在玻璃罩上制造通孔。研究了将等离子体分离装置耦合到嵌入式片上p-i-n光电二极管作为高灵敏度β粒子探测器的片上实验室概念。制作了第一台探测器样机并对其进行了表征。研究了KMPR自身荧光,以优化荧光珠表征微流控功能。
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