首页> 外文会议>International Solid-State Sensors, Actuators and Microsystems Conference >TOWARDS ENHANCED DETECTION OF CHEMICAL AGENTS: DESIGN AND DEVELOPMENT OF A MICROFABRICATED PRECONCENTRATOR
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TOWARDS ENHANCED DETECTION OF CHEMICAL AGENTS: DESIGN AND DEVELOPMENT OF A MICROFABRICATED PRECONCENTRATOR

机译:朝着增强的化学试剂检测:微制造的预融合器的设计和开发

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Cascade Avalanche Sorbent Plate ARray (CASPAR), a rnicromachined hotplate coated with sorbent polymer, has been demonstrated earlier as a selective preconcentrator for chemical agents and explosives. Up to two orders of magnitude increase in sensitivity has been established by incorporating CASPAR as a front end-modification to commercial detectors. Experimental evidence obtained via thermal imaging and fluorescent particle flow tagging suggests that an 8.5mm×8.5mm current hotplate design is sub-optimal due to non-uniformities in the heating and vapor/particle collection profiles. In this study, we discuss the CASPAR design optimization with the aim to enhance the collection efficiency of hazardous chemical vapor while maintaining thermal stability and precise control before injection of a focused pulse of analyte into a detector.
机译:级联雪崩吸附剂板阵列(Caspar),涂有吸附剂聚合物的Rnicromachined热板,以前作为化学试剂和炸药的选择性预融合器。通过将Caspar作为商业探测器的前端修改,通过将Caspar作为前端改造,建立了最多两个敏感性的级别增加。通过热成像和荧光粒子流量标记获得的实验证据表明,由于加热和蒸汽/颗粒收集型材的非均匀性,8.5mm×8.5mm电流热板设计是次优。在这项研究中,我们讨论了Caspar设计优化,目的是提高危险化学蒸气的收集效率,同时在将分析物的聚焦脉冲注入探测器之前保持热稳定性和精确控制。

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