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首页> 外文期刊>Sensors and Actuators. B, Chemical >Mixed-ligand nanoparticles of chlorobenzenemethanethiol and n-octanethiol as chemical sensors
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Mixed-ligand nanoparticles of chlorobenzenemethanethiol and n-octanethiol as chemical sensors

机译:氯苯甲硫醇和正辛硫醇的混合配体纳米粒子作为化学传感器

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摘要

A series of mixed-ligand gold nanoparticles were synthesized, characterized and used to form transducer films to investigate and enhance vapor-sensing properties. Chlorobenzenemethanethiol (CBMT) nanoparticle, prepared using a two-phase method, was used for place-exchange reactions with a varying amount of n-octanethiol (OT) to produce a series of mixed-ligand gold nanoparticles (Au-CBMT-OT-1, Au.CBMT-OT-2, and Au_CBMT-OT-3). The nanoclusters were characterized by ~1H NMR spectroscopy, thermal gravimetric analysis (TGA), and transmission electron microscopy (TEM). Thin film transducers of the monolayer-protected nanoparticles were formed through a dip-coating procedure on glass substrates mounted with interdigitated gold electrodes. SEM analysis indicated that mostly the surfaces of the sensors films were smooth. Nanoparticle sensors experienced repeated cycles of analyte vapors and blank air gas as the analyte concentrations were varied. Mostly the nanoparticle sensors produced rapid and reversible responses toward the vapors of 1-propanol, acetone and cyclohexane. Linear relationship between maximum resistance changes and vapor concentrations were observed. Above all the variations in compositions of the ligand molecules (CBMT and OT) resulted in differences in signal amplitudes.
机译:合成,表征了一系列混合配体金纳米粒子,并用于形成换能器膜,以研究和增强蒸气感测性能。使用两相方法制备的氯苯甲硫醇(CBMT)纳米颗粒与不同量的正辛硫醇(OT)进行位置交换反应,以生产一系列混合配体金纳米颗粒(Au-CBMT-OT-1 ,Au.CBMT-OT-2和Au_CBMT-OT-3)。通过〜1H NMR光谱,热重分析(TGA)和透射电子显微镜(TEM)对纳米团簇进行了表征。通过浸涂法在装有叉指状金电极的玻璃基板上形成单层保护的纳米颗粒的薄膜换能器。 SEM分析表明,传感器膜的大部分表面是光滑的。随着分析物浓度的变化,纳米颗粒传感器经历了分析物蒸汽和空白空气的重复循环。通常,纳米颗粒传感器对1-丙醇,丙酮和环己烷的蒸气产生快速且可逆的响应。观察到最大电阻变化与蒸气浓度之间的线性关系。最重要的是,配体分子(CBMT和OT)组成的变化导致信号幅度的差异。

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