Steinecker William H, Rowe Michael P, Zellers Edward T
Engineering Research Center for Wireless Integrated MicroSystems, Department of Chemistry, University of Michigan, 109 South Observatory, Ann Arbor, Michigan 48109-2029, USA.
Anal Chem. 2007 Jul 1;79(13):4977-86. doi: 10.1021/ac070068y. Epub 2007 May 25.
An investigation of the modulation of charge transport through thin films of n-octanethiolate monolayer-protected gold nanoparticles (MPN) induced by the sorption of organic vapors is presented. A model is derived that allows predictions of MPN-coated chemiresistor (CR) responses from vapor-film partition coefficients, and analyte densities and dielectric constants. Calibrations with vapors of 28 compounds collected from an array of CRs and a parallel thickness-shear-mode resonator are used to verify assumptions inherent in the model and to assess its performance. Results afford insights into the nature of the vapor-MPN interactions, including systematic variations in apparent film swelling efficiencies, and show that the model can predict CR responses typically to within 24%. Using CRs of different dimensions, vapor sensitivities are found to be virtually independent of the MPN film volume over a range of 104 (device-area x MPN layer thickness). Sensitivities vary inversely with analyte vapor pressure similarly for the two sensor types, but the CR sensor affords significantly greater signal-to-noise ratios, yielding calculated detection limits in the low-part-per-billion concentration range for several of the analytes tested. The implications of these results for implementing MPN-coated CR arrays as detectors in microanalytical systems are considered.
本文介绍了对有机蒸汽吸附诱导的电荷通过正辛硫醇单层保护金纳米颗粒(MPN)薄膜传输调制的研究。推导了一个模型,该模型可根据蒸汽 - 薄膜分配系数、分析物密度和介电常数预测MPN涂层化学电阻器(CR)的响应。使用从一组CR和一个平行厚度剪切模式谐振器收集的28种化合物蒸汽进行校准,以验证模型中固有的假设并评估其性能。结果提供了对蒸汽 - MPN相互作用性质的见解,包括表观薄膜溶胀效率的系统变化,并表明该模型可以预测CR响应,通常误差在24%以内。使用不同尺寸的CR,发现在104(器件面积×MPN层厚度)范围内,蒸汽灵敏度实际上与MPN薄膜体积无关。对于两种传感器类型,灵敏度与分析物蒸汽压成反比,但CR传感器具有显著更高的信噪比,对于几种测试的分析物,计算出的检测限在十亿分率浓度范围的下限。考虑了这些结果对于在微分析系统中使用MPN涂层CR阵列作为探测器的意义。