Wang Jin, Yang Beibei, Gao Fei, Song Pingping, Li Lei, Zhang Yangping, Lu Cheng, Goh M Cynthia, Du Yukou
College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, 215123, People's Republic of China.
College of Biological, Chemical Sciences and Engineering, Jiaxing University, Jiaxing, Zhejiang, 314001, People's Republic of China.
Nanoscale Res Lett. 2019 Jan 8;14(1):11. doi: 10.1186/s11671-018-2839-0.
Electrochemical sensors have the high sensitivity, fast response, and simple operation for applications in biological, medical, and chemical detection, but limited by the poor stability and high cost of the electrode materials. In this work, we used PtNi lagged-like nanowire for caffeic acid (CA) electrochemical detection. The removal of outer layer Ni during reaction process contributed to the rehabilitation of active Pt sites at the surface, leading to the excellent electrocatalytic behavior of CA sensing. Carbon-supported PtNi-modified glassy carbon electrode (PtNi/C electrode) showed a broad CA detecting range (from 0.75 to 591.783 μM), a low detection limit (0.5 μM), and excellent stability. The electrode preserved high electrocatalytic performance with 86.98% of the initial oxidation peak current retained after 4000 potential cycles in 0.5 mM caffeic acid solution. It also demonstrates excellent anti-interference capability and is ready for use in the real sample analysis.
电化学传感器具有高灵敏度、快速响应和操作简单等特点,可应用于生物、医学和化学检测,但受限于电极材料稳定性差和成本高。在这项工作中,我们使用类滞后状PtNi纳米线用于咖啡酸(CA)的电化学检测。反应过程中外层Ni的去除有助于表面活性Pt位点的恢复,从而导致CA传感具有优异的电催化行为。碳载PtNi修饰玻碳电极(PtNi/C电极)显示出较宽的CA检测范围(从0.75到591.783μM)、低检测限(0.5μM)和优异的稳定性。在0.5 mM咖啡酸溶液中经过4000次电位循环后,该电极保留了86.98%的初始氧化峰电流,保持了高电催化性能。它还表现出优异的抗干扰能力,可用于实际样品分析。