Department of Information and Communications Engineering, Tokyo Institute of Technology, Yokohama 226-8503, Kanagawa, Japan.
Department of Materials Science and Engineering, Tokyo Institute of Technology, Yokohama 226-8503, Kanagawa, Japan.
Sensors (Basel). 2023 Apr 20;23(8):4132. doi: 10.3390/s23084132.
Miniaturized sensors possess many advantages, such as rapid response, easy chip integration, a possible lower concentration of target compound detection, etc. However, a major issue reported is a low signal response. In this study, a catalyst, the atomic gold clusters of Au where n = 2, was decorated at a platinum/polyaniline (Pt/PANI) working electrode to enhance the sensitivity of butanol isomers gas measurement. Isomer quantification is challenging because this compound has the same chemical formula and molar mass. Furthermore, to create a tiny sensor, a microliter of room-temperature ionic liquid was used as an electrolyte. The combination of the Au clusters decorated Pt/PANI and room temperature ionic liquid with several fixed electrochemical potentials was explored to obtain a high solubility of each analyte. According to the results, the presence of Au clusters increased the current density due to electrocatalytic activity compared to the electrode without Au clusters. In addition, the Au clusters on the modified electrode had a more linear concentration dependency trend than the modified electrode without atomic gold clusters. Finally, the separation among butanol isomers was enhanced using different combination of room-temperature ionic liquids and fixed potentials.
微型传感器具有快速响应、易于芯片集成、可能降低目标化合物检测浓度等优点。然而,据报道,一个主要问题是信号响应低。在这项研究中,一种催化剂,即原子金簇 Au 其中 n = 2,被修饰在铂/聚苯胺 (Pt/PANI) 工作电极上,以提高丁醇异构体气体测量的灵敏度。异构体定量具有挑战性,因为该化合物具有相同的化学式和摩尔质量。此外,为了制造微型传感器,使用微升室温离子液体作为电解质。研究了用几种固定电化学电势修饰的 Au 簇 Pt/PANI 和室温离子液体的组合,以获得每种分析物的高溶解度。结果表明,与没有 Au 簇的电极相比,Au 簇的存在由于电催化活性而增加了电流密度。此外,修饰电极上的 Au 簇比没有原子金簇的修饰电极具有更线性的浓度依赖性趋势。最后,通过使用不同组合的室温离子液体和固定电势,增强了丁醇异构体之间的分离。