Sandia National Laboratories, Integrated Microdevice Systems Department, Albuquerque, NM 87185, USA.
Sensors (Basel). 2011;11(7):6517-32. doi: 10.3390/s110706517. Epub 2011 Jun 24.
Gas chromatography (GC) is used for organic and inorganic gas detection with a range of applications including screening for chemical warfare agents (CWA), breath analysis for diagnostics or law enforcement purposes, and air pollutants/indoor air quality monitoring of homes and commercial buildings. A field-portable, light weight, low power, rapid response, micro-gas chromatography (μGC) system is essential for such applications. We describe the design, fabrication and packaging of μGC on monolithically-integrated Si dies, comprised of a preconcentrator (PC), μGC column, detector and coatings for each of these components. An important feature of our system is that the same mechanical micro resonator design is used for the PC and detector. We demonstrate system performance by detecting four different CWA simulants within 2 min. We present theoretical analyses for cost/power comparisons of monolithic versus hybrid μGC systems. We discuss thermal isolation in monolithic systems to improve overall performance. Our monolithically-integrated μGC, relative to its hybrid cousin, will afford equal or slightly lower cost, a footprint that is 1/2 to 1/3 the size and an improved resolution of 4 to 25%.
气相色谱法(GC)用于有机和无机气体检测,应用范围包括化学战剂(CWA)筛查、用于诊断或执法目的的呼吸分析,以及家庭和商业建筑的空气污染物/室内空气质量监测。对于此类应用,需要一种现场便携、重量轻、功耗低、响应迅速、微型气相色谱(μGC)系统。我们描述了在单片集成硅芯片上进行 μGC 的设计、制造和封装,其中包括预浓缩器(PC)、μGC 柱、检测器以及这些组件的涂层。我们系统的一个重要特点是,PC 和检测器使用相同的机械微谐振器设计。我们通过在 2 分钟内检测到四种不同的 CWA 模拟物来展示系统性能。我们提出了针对单片与混合 μGC 系统成本/功耗比较的理论分析。我们讨论了在单片系统中的热隔离,以提高整体性能。与混合式 μGC 相比,我们的单片集成 μGC 将具有相同或略低的成本、1/2 到 1/3 的占地面积和提高 4 到 25%的分辨率。