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首页> 外文期刊>Analytica chimica acta >A vapor selectivity study of microsensor arrays employing various functionalized ligand protected gold nanoclusters
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A vapor selectivity study of microsensor arrays employing various functionalized ligand protected gold nanoclusters

机译:使用各种功能化配体保护的金纳米团簇的微传感器阵列的蒸汽选择性研究

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摘要

We synthesized and tested four different monolayer protected gold nanoclusters (MPCs) as chemically selective interfaces for an organic vapor sensor array.The ligands chosen for capping the nano-Au particles and for selective organic vapor sorption were octanethiol,2-naphthalenethiol,2-benzothiazolethiol and 4-methoxythiolphenol.The same set of gold nanoclusters were tested on two different types of sensor platforms,a chemiresistor (CR) and a quartz crystal microbalance (QCM).The sensing properties of both sensor arrays were investigated with 10 organic vapors of various functional groups.Vapor sensing selectivity,dominated by the shell ligand structure of MPC,was demonstrated.The sensitivities of MPC coated CR are better than those of QCM sensors coated with the same material.The average CR/QCM amplification factors are range from 1.9 for 4-methoxythiolphenol MPC to 16.9 for octanethiol MPC.These differences in amplification factors indicate the functional group specific mechanisms for each vapor-MPC pair.The shell penetration mechanism of hydrogen-bonding vapor molecules into the 2-benzothiazolethiol capped MPC reduced the CR/QCM amplification factors.Strong attraction between MPC shell ligands can also reduce the magnitude of resistance changes during vapor sorption.
机译:我们合成并测试了四种不同的单层保护金纳米簇(MPC)作为有机蒸气传感器阵列的化学选择性界面。用于覆盖纳米Au颗粒和选择性有机蒸气吸附的配体为辛硫醇,2-萘硫醇,2-苯并噻唑硫醇。分别在化学传感器(CR)和石英晶体微天平(QCM)的两种不同类型的传感器平台上测试了同一套金纳米簇,并用10种不同有机蒸气对这两种传感器阵列的感测特性进行了研究。证明了以MPC的壳配体结构为主导的蒸汽感测选择性.MPC涂层CR的灵敏度优于相同材料涂层的QCM传感器.CR / QCM的平均放大系数为1.9 4-甲氧基巯基苯酚MPC的辛烷硫醇MPC为16.9。这些扩增因子的差异表明了功能基团的特定机制在每个蒸气-MPC对中,氢键结合的蒸气分子进入2-苯并噻唑硫醇封端的MPC的壳渗透机理降低了CR / QCM放大因子,MPC壳配体之间的强吸引力还可以降低蒸气吸附过程中电阻变化的幅度。

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