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首页> 外文期刊>Journal of Microelectromechanical Systems >Microfabricated preconcentrator-focuser for a microscale gas chromatograph
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Microfabricated preconcentrator-focuser for a microscale gas chromatograph

机译:用于微型气相色谱仪的微型预浓缩仪-聚焦仪

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摘要

The design, fabrication, and testing of a preconcentrator-focuser (PCF), consisting of a thick micromachined Si heater packed with a small quantity of a granular adsorbent material are described. The PCF is developed to capture and concentrate vapors for subsequent focused thermal desorption and analysis in a micro gas chromatograph. The microheater contains an array of high-aspect-ratio, etched-Si heating elements, 520 /spl mu/m (h)/spl times/50 /spl mu/m (w)/spl times/3000 /spl mu/m (l), bounded by an annulus of Si and thermally isolated from the remaining substrate by an air gap. This structure is sandwiched between Pyrex glass plates with inlet/outlet ports that accept capillary tubes for sample flow and is sealed by anodic bonding (bottom) and rapidly annealed glass/metal/Si solder bonding (top). The large microheater surface area allows for high adsorption capacity and efficient, uniform thermal desorption of vapors captured on the adsorbent within the structure. The adsorbent consists of roughly spherical granules, /spl sim/200 /spl mu/m in diameter, of a high-surface-area, graphitized carbon. Key design considerations, fabrication technologies, and results of performance tests are presented with an emphasis on the thermal desorption characteristics of several representative volatile organic compounds as a function of volumetric flow rates and heating rates. Preconcentration factors as high as 5600 and desorbed peak widths as narrow as 0.8 s are achieved from 0.25-L samples of benzene at modest heating rates. The effects of operating variables on sensitivity, chromatographic resolution, and detection limits are assessed. Testing of this PCF with a micromachined separation column and integrated sensor array is discussed briefly.
机译:描述了预浓缩聚焦器(PCF)的设计,制造和测试,该浓缩器由厚的微机械硅加热器组成,该加热器装有少量的颗粒状吸附材料。 PCF的开发目的是捕获和浓缩蒸气,以便随后在微型气相色谱仪中进行重点的热脱附和分析。微型加热器包含一系列高纵横比的蚀刻Si加热元件,520 / spl mu / m(h)/ spl times / 50 / spl mu / m(w)/ spl times / 3000 / spl mu / m (l),以Si环为边界,并通过气隙与其余衬底热隔离。该结构夹在带有入口/出口的Pyrex玻璃板之间,该入口/出口可容纳用于样品流动的毛细管,并通过阳极键合(底部)和快速退火的玻璃/金属/ Si焊料键合(顶部)进行密封。较大的微型加热器表面积可实现高吸附能力,并使结构内吸附剂上捕获的蒸气高效,均匀地热脱附。吸附剂由高表面积石墨化碳的大致球形颗粒组成,直径为/ spl sim / 200 / spl mu / m。提出了关键的设计考虑因素,制造技术和性能测试的结果,重点是作为体积流量和加热速率的函数的几种代表性挥发性有机化合物的热脱附特性。在温和的加热速率下,从0.25升苯样品中可获得高达5600的预浓缩因子和窄至0.8 s的解吸峰宽。评估操作变量对灵敏度,色谱分离度和检测限的影响。简要讨论了使用微机械分离柱和集成传感器阵列对该PCF进行的测试。

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