Lange Dirk, Hagleitner Christoph, Hierlemann Andreas, Brand Oliver, Baltes Henry
ETH Zurich, Physical Electronics Laboratory, Switzerland.
Anal Chem. 2002 Jul 1;74(13):3084-95. doi: 10.1021/ac011269j.
The sensing behavior of polymer-coated resonant cantilevers for mass-sensitive detection of volatile organic compounds was investigated. Industrial complementary metal oxide semiconductor (CMOS) technology combined with subsequent CMOS-compatible micromachining was used to fabricate a single-chip system comprising the transducers and all necessary driving and signal-conditioning circuitry. An analytical model was developed to describe the mass-sensing mechanism of polymer-coated resonant cantilevers. The model was validated by measurements of various gaseous analytes. As an exemplary application, the quantitative analysis of a binary mixture using an array of four cantilevers is described. Experimental results are given for the concentration prediction of a mixture of n-octane and toluene. Finally, it was established that the limit of detection achieved with cantilever sensors is comparable to that of other acoustic wave-based gas sensors.
研究了聚合物涂层谐振悬臂梁对挥发性有机化合物进行质量敏感检测的传感行为。采用工业互补金属氧化物半导体(CMOS)技术并结合后续的CMOS兼容微加工工艺,制造了一个包含传感器以及所有必要驱动和信号调理电路的单芯片系统。开发了一个分析模型来描述聚合物涂层谐振悬臂梁的质量传感机制。该模型通过对各种气态分析物的测量进行了验证。作为一个示例性应用,描述了使用四个悬臂梁阵列对二元混合物进行定量分析的过程。给出了正辛烷和甲苯混合物浓度预测的实验结果。最后确定,悬臂梁传感器实现的检测限与其他基于声波的气体传感器相当。