Electroanalysis and Bioelectrochemistry Lab, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan, ROC.
Electroanalysis and Bioelectrochemistry Lab, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan, ROC.
Ultrason Sonochem. 2020 Oct;67:105146. doi: 10.1016/j.ultsonch.2020.105146. Epub 2020 Apr 27.
This study reports the sonochemical synthesis of samarium tungstate nanoparticles (SWNPs) for applications in electrochemical sensors. The synthesis process is based on a precipitation reaction, which was investigated by ultrasound and compared with the effect of stirring. A bath sonicator operated at a frequency and power of 37/100 kHz and ~60 W, respectively, was employed to prepare the material. The shock waves efficiently irradiated the reaction conditions as much as possible, resulting in the good crystallinity of the monoclinic phase of the SWNPs, which was confirmed by XRD analysis. The surface morphology and structural composition was further evaluated by HRTEM, EDS and XPS. The good crystallinity and uniform distribution of elements in the nanoparticles were confirmed. The performance of the SWNPs to electrochemically sense nilutamide (NLT) was studied, which revealed a good electrochemical signal. As a result, the SWNPs were applied to an electrode material for the detection of NLT. This study revealed the excellent activity of the SWNPs for NLT detection, resulting in a low detection limit (0.0026 µM) and good linear range (0.05-318 µM). Furthermore, the results show appreciable analytical performances, which could be applied to electrochemical anti-androgen drug nilutamide sensors.
本研究报告了一种基于超声辅助沉淀反应的制备方法,用于合成钨酸钐纳米粒子(SWNPs),并将其应用于电化学传感器。与搅拌条件相比,超声辅助可以有效地提高反应速率和产物的结晶度。实验采用频率为 37/100 kHz、功率为 60 W 的浴式超声设备来制备 SWNPs。XRD 分析结果表明,SWNPs 具有良好的结晶性,属于单斜晶系。HRTEM、EDS 和 XPS 进一步证实了 SWNPs 的形貌和元素组成均匀。SWNPs 对电化学检测尼鲁米特(NLT)具有良好的电化学响应。因此,将 SWNPs 应用于尼鲁米特检测的电极材料中。研究结果表明,SWNPs 对 NLT 具有优异的电化学检测活性,检测限低至 0.0026 µM,线性范围较宽(0.05-318 µM)。此外,该传感器还具有良好的分析性能,可用于电化学抗雄激素药物尼鲁米特传感器的研究。