State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun, 130012, People's Republic of China.
Department of Cardiology, Second Hospital, Jilin University, Changchun, 130041, People's Republic of China.
Mikrochim Acta. 2018 Aug 1;185(8):397. doi: 10.1007/s00604-018-2925-0.
The authors describe a chemical sensor for dopamine (DA). It is based on the use of three-dimensional graphene oxide (3D rGO) loaded with varying amounts of AuPd bimetallic nanoparticles (3D rGO/AuPd NPs). The 3D rGO acts as an effective substrate providing a large surface area and allowing fast electron transfer. The interaction between 3D rGO and surface AuPd NPs increases the activity of the sensing material. These composites were fabricated as the active layer on an indium tin oxide for DA determination. The electrode showed the best performance at a working potential of 0.25 V (vs. the saturated calomel reference electrode) and a scan rate of 100 mVs. The best electrode exhibits good sensitivity (4670 μA·mM·cm), a wide linear response (0.5 μM to 135 μM), and a low detection limit (0.2 μM). It is also selective, easily reproducible, and stable. It was applied to the determination of DA in spiked human serum and in clinical DA hydrochloride injections. The excellent performance of this electrode is attributed to the efficient electron transfer and large specific surface area of 3D rGO and to the high electrocatalytic activity of AuPd NPs due to the synergistic effect between the 3D rGO substrate and the AuPd alloy NPs. Graphical abstract An three-dimensional reduced graphene oxide (3D rGO) foam was loaded with AuPd bimetallic nanoparticles and applied to dopamine (DA) detection in human serum and an injection fluid.
作者描述了一种用于多巴胺(DA)的化学传感器。它基于使用负载有不同量的金钯双金属纳米粒子(3D rGO/AuPd NPs)的三维氧化石墨烯(3D rGO)。3D rGO 作为有效基底提供了大的表面积并允许快速电子转移。3D rGO 与表面 AuPd NPs 之间的相互作用增加了传感材料的活性。这些复合材料被制备为在氧化铟锡上用于 DA 测定的活性层。该电极在工作电位为 0.25 V(相对于饱和甘汞参比电极)和扫描速率为 100 mV/s 时表现出最佳性能。最佳电极表现出良好的灵敏度(4670 μA·mM·cm)、宽线性响应范围(0.5 μM 至 135 μM)和低检测限(0.2 μM)。它还具有选择性、重现性好且稳定。它被应用于测定加标人血清中的 DA 和临床盐酸 DA 注射液中的 DA。该电极的优异性能归因于 3D rGO 的高效电子转移和大比表面积,以及 AuPd NPs 的高电催化活性,这归因于 3D rGO 基底和 AuPd 合金 NPs 之间的协同效应。