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Dual-chemiresistor GC detector employing layer-protected metal nanocluster interfaces

机译:采用层保护金属纳米簇界面的双化学气相色谱检测器

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The synthesis and testing of two gold-thiolate monolayer-protected (nano)clusters as interfacial layers on a dual-chemiresistor vapor sensor array are described. Responses (changes in dc resistance) to each of 11 organic solvent vapors are rapid, reversible, and linear with concentration at low vapor concentrations, becoming sublinear at higher concentrations. Limits of detection (LODs) range from 0.1 to 24 parts per million and vary inversely with solvent vapor pressure. When configured as a GC detector and used to analyze 0.5-L preconcentrated samples of the 11-vapor mixture, the array provides LODs of less than or equal to700 parts per trillion for most vapors, comparing favorably with those from an integrated array of polymer-coated surface acoustic wave sensors configured and tested similarly. This first report on the use of such an array as a GC detector shows that the combination of response patterns and GC retention times improves capabilities for vapor recognition compared to the sensor array alone or to single-detector GC systems. Spray-coated nanocluster thin films can be deposited reproducibly and exhibit response stability in air that ranges from fair to,excellent for up to several months. Scaling the active device area down by a factor of 16 has no significant effect on sensitivity. Implications of these results for portable vapor sensing systems are discussed. [References: 36]
机译:描述了两个双硫醇盐蒸气传感器阵列上作为界面层的硫醇金单层保护的(纳米)簇的合成和测试。对11种有机溶剂蒸气的响应(直流电阻的变化)快速,可逆,并且在低蒸气浓度下与浓度呈线性关系,在较高浓度下变为亚线性。检测极限(LOD)范围为百万分之0.1到24,并且与溶剂蒸气压成反比。当配置为GC检测器并用于分析0.5升预浓缩的11种蒸气混合物的样品时,该阵列对大多数蒸气提供的LOD小于或等于700万亿分之七,与聚合物-涂层的表面声波传感器的配置和测试类似。关于使用这种阵列作为GC检测器的第一份报告显示,与单独的传感器阵列或单检测器GC系统相比,响应模式和GC保留时间的组合提高了蒸气识别能力。喷涂的纳米簇薄膜可以可重现地沉积,并且在空气中表现出的响应稳定性范围从中等到极好,长达数月之久。将有源器件的面积缩小16倍,对灵敏度没有明显影响。讨论了这些结果对便携式蒸气感测系统的影响。 [参考:36]

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