Kurzawski Petra, Hagleitner Christoph, Hierlemann Andreas
Physical Electronics Laboratory, ETH Zurich, HPT-H8, 8093 Zurich, Switzerland.
Anal Chem. 2006 Oct 1;78(19):6910-20. doi: 10.1021/ac0610107.
The performance of a single-chip, three-transducer, complementary metal oxide semiconductor gas sensor microsystem has been thoroughly evaluated. The monolithic gas sensor system includes three polymer-coated transducers, a mass-sensitive cantilever, a thermoelectric calorimetric sensor, and an interdigitated capacitive sensor that are integrated along with all electronic circuits needed to operate these sensors. The system additionally includes a temperature sensor and a serial interface unit so that it can be directly connected to, for example, a microcontroller. Several multitransducer chips have been coated with various partially selective polymers and then have been exposed to different volatile organic compounds. The sensitivities of the three different polymer-coated transducers to defined sets of gaseous analytes have been determined. The obtained sensitivity values have then been normalized with regard to the partition coefficients of the respective analyte/polymer combination to reveal the transducer-specific effects. The results of this investigation show that the three different transducers respond to fundamentally different molecular properties, such as the analyte molecular mass (mass-sensitive), its dielectric coefficient (capacitive), and its sorption heat (calorimetric) so that correlations between the determined sensitivity values and the different molecular properties of the absorbed analytes could be established. The information as provided by the system, hence, represents a body of orthogonal data that can serve as input to appropriate signal processing and pattern recognition techniques to address issues such as the quantification of analytes in mixtures.
已对一种单芯片、三传感器互补金属氧化物半导体气体传感器微系统的性能进行了全面评估。该单片式气体传感器系统包括三个聚合物涂层传感器、一个质量敏感悬臂、一个热电式量热传感器和一个叉指式电容传感器,它们与操作这些传感器所需的所有电子电路集成在一起。该系统还包括一个温度传感器和一个串行接口单元,以便它可以直接连接到例如微控制器。几个多传感器芯片已涂覆各种部分选择性聚合物,然后暴露于不同的挥发性有机化合物中。已确定了三种不同聚合物涂层传感器对特定气态分析物组的灵敏度。然后,根据各分析物/聚合物组合的分配系数对获得的灵敏度值进行归一化,以揭示传感器特定效应。这项研究的结果表明,这三种不同的传感器对根本不同的分子特性有反应,例如分析物分子量(质量敏感)、其介电系数(电容式)及其吸附热(量热式),因此可以确定灵敏度值与被吸收分析物的不同分子特性之间的相关性。因此,该系统提供的信息代表了一组正交数据,可作为适当信号处理和模式识别技术的输入,以解决诸如混合物中分析物定量等问题。