Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan; Research and Development Center for Smart Textile Technology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan.
Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, No. 1, Section 3, Chung-Hsiao East Road, Taipei 106, Taiwan.
Ultrason Sonochem. 2019 Nov;58:104596. doi: 10.1016/j.ultsonch.2019.05.013. Epub 2019 May 10.
Herein, we report a super-active electrocatalyst of copper(II) oxide nanoparticles (CuO NPs) decorated functionalized multiwalled carbon nanotubes (CuO NPs@f-MWCNTs) by the ultrasonic method. The as-synthesized CuO NPs@f-MWCNTs was characterized through the FESEM, XPS, XRD and electrochemical impedance spectroscopy (EIS). The combination of highly active CuO NPs and highly conductive f-MWCNTs film with rapid detection enables this nanohybrid to display excellent electrochemical performance towards anesthesia drug. Furthermore, the hybrid electrocatalyst modified SPCE was developed for the determination of flunitrazepam (FTM) for the first time. FTM is important anesthesia drug with high adverse effect in human body. Benefiting from the synergistic reaction of CuO NPs and f-MWCNTs, this nanohybrid exhibited high sensitivity and specificity towards FTM electro-reduction. The CuO NPs@f-MWCNTs film modified SPCE exhibits outstanding electrochemical activity including excellent reproducibility, wide linear range from 0.05 to 346.6 µM with nanomolar limit of detection for FTM detection. Further, the as-modified CuO NPs@f-MWCNTs/SPCE has been applied to determination of FTM in biological and drug samples with satisfactory recovery results, thereby showing a notable potential for extensive (bio) sensor applications.
在此,我们通过超声法报告了一种超活性的氧化铜纳米粒子(CuO NPs)修饰的功能化多壁碳纳米管(CuO NPs@f-MWCNTs)电催化剂。通过 FESEM、XPS、XRD 和电化学阻抗谱(EIS)对合成的 CuO NPs@f-MWCNTs 进行了表征。高活性的 CuO NPs 和高导电性的 f-MWCNTs 薄膜的结合以及快速检测使这种纳米杂化物对麻醉药物显示出优异的电化学性能。此外,首次开发了混合电催化剂修饰的 SPCE 用于测定氟硝西泮(FTM)。FTM 是一种重要的麻醉药物,对人体有很高的副作用。得益于 CuO NPs 和 f-MWCNTs 的协同反应,这种纳米杂化物对 FTM 的电还原表现出高灵敏度和特异性。修饰后的 SPCE 的 CuO NPs@f-MWCNTs 薄膜表现出出色的电化学活性,包括对 FTM 检测具有极好的重现性、从 0.05 到 346.6 µM 的宽线性范围和纳摩尔级别的检测限。此外,所修饰的 CuO NPs@f-MWCNTs/SPCE 已成功应用于生物和药物样品中 FTM 的测定,具有令人满意的回收率结果,从而为广泛的(生物)传感器应用展示了显著的潜力。