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.
Department of Chemistry, VHNSN College, Virudhunagar 626 001, Tamil Nadu, India.
Ultrason Sonochem. 2018 Jun;44:231-239. doi: 10.1016/j.ultsonch.2018.02.025. Epub 2018 Feb 12.
In the modern world, the contamination of ecosystem by human and veterinary pharmaceutical drugs through the metabolic excretion, improper disposal/industrial waste has been subjected to a hot issue. Therefore, exploitation of exclusive structured material and reliable technique is a necessary task to the precise detection of drugs. With this regards, we made an effort for the fabrication of novel one-dimensional (1D) stannous tungstate nanorods (β-SnW NRs) via simple sonochemical approach and used as an electrochemical sensor for the detection of antipsychotic drug chlorpromazine (CPZ) for the first time. The crystallographic structure, surface topology, elemental compositions and their distributions and ionic states were enquired by different spectroscopic techniques such as XRD, FTIR, SEM, EDS, elemental mapping and XPS analysis. The developed β-SnW NRs/GCE sensor exhibits a rapid and sensitive electrochemical response towards CPZ sensing with wide linear response range (0.01-457 µM), high sensitivity (2.487 µA µM cm), low detection limit (0.003 µM) and excellent selectivity. Besides, the as-proposed electrochemical sensor was successfully applied to real sample analysis in commercial CPZ drug and biological fluids and the acquired recovery results are quite satisfactory. The proposed sonochemical method for the preparation of β-SnW NRs is low cost, very simple, fast and efficient for sensor applications.
在现代世界中,人类和兽医药物通过代谢排泄、不当处置/工业废物对生态系统的污染已经成为一个热点问题。因此,开发独特结构的材料和可靠的技术是精确检测药物的必要任务。有鉴于此,我们通过简单的超声化学方法努力制备了新型一维(1D)氧化亚锡钨酸盐纳米棒(β-SnW NRs),并首次将其用作电化学传感器来检测抗精神病药物氯丙嗪(CPZ)。通过 XRD、FTIR、SEM、EDS、元素映射和 XPS 分析等不同光谱技术研究了晶体结构、表面拓扑、元素组成及其分布和离子态。开发的β-SnW NRs/GCE 传感器对 CPZ 传感具有快速、灵敏的电化学响应,具有较宽的线性响应范围(0.01-457 µM)、高灵敏度(2.487 µA µM cm)、低检测限(0.003 µM)和出色的选择性。此外,所提出的电化学传感器成功地应用于商业 CPZ 药物和生物液体制品的实际样品分析,获得的回收率结果非常令人满意。所提出的用于制备β-SnW NRs 的超声化学方法具有成本低、非常简单、快速和高效的特点,适用于传感器应用。