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Sensitivity, Selectivity, and Nanodimensional Effects in Gold Nanocluster Vapor Sensors

机译:金纳米团簇蒸汽传感器中的灵敏度,选择性和纳米效应

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A chemiresistor vapor sensor based on electron transport through an ensemble of ligand-stabilized gold nanoclusters is made exceptionally sensitive and selective by terminal carboxylic acid functionalization of the alkanethiol ligand. The directionality of the response (conductance increase or decrease) is strongly dependent on the nanoscale dimensions of the gold core and ligand shell thickness. Films of gold nanoclusters composed of a 2-nm metal core with a 0.5-nm S(CH2)5COOH shell are compared with those based on an 8-nm core and a 1.5-nm S(CH2)15 COOH shell. Sensitivity toward amine vapors covered spanned 4–5 orders of magnitude with a detection limit lower than 0.1 ppm and respective selectivity factors of (100times ) and (20times ) over interferent vapors. Sensor isotherm measurements on a series of trialkylamine vapors displayed a sensitivity dependence that correlates with vapor pressure. Comparative responses to deuterated and nondeuterated triethylamine vapor exposures were identical and ruled out a sensor transduction mechanism that couples analyte vibrational modes with electron tunneling between gold nanocluster cores.
机译:通过链烷硫醇配体的末端羧酸官能化,基于通过配体稳定的金纳米团簇的电子传输而产生的化学反应器蒸汽传感器异常灵敏且具有选择性。响应的方向性(电导增加或减少)在很大程度上取决于金核的纳米级尺寸和配体壳的厚度。比较了由2纳米金属核和0.5纳米S(CH 2 5 COOH壳组成的金纳米簇的薄膜与基于8纳米核的薄膜和一个1.5纳米的S(CH 2 15 COOH壳。对胺蒸气的敏感度跨度为4-5个数量级,检出限低于0.1 ppm,相应的选择性因子为 (100times) < / inline-formula>和 (20次) 干扰蒸气。一系列三烷基胺蒸气的传感器等温线测量显示出与蒸气压相关的灵敏度依赖性。对氘代和非氘代三乙胺蒸气暴露的比较响应是相同的,并且排除了传感器传导机制,该机制将分析物的振动模式与金纳米簇核之间的电子隧穿耦合。

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