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Enhanced luminol–O2 chemiluminescence reaction by CuO nanoparticles as oxidase mimics and its application for determination of ceftazidime

机译:CuO纳米颗粒作为氧化酶模拟物增强鲁米诺-O2化学发光反应及其在头孢他啶测定中的应用

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A cursory survey of the literature shows that although peroxidase-like activity is a well-known and well-applied property of CuO nanoparticles (CuO NPs), the oxidase-like activity of CuO NPs is a property that is somehow neglected to be incorporated in analytical applications. The present work reports that CuO NPs, with intrinsic oxidase-like activity, catalyze the oxidation of luminol by dissolved oxygen (DO) to generate enhanced chemiluminescence (CL) emission. In addition, it was found that ceftazidime (CFZM) has an effective attenuating effect on the CuO NP-catalyzed luminola€“O2 CL system in alkaline medium. Based on these findings, a simple and sensitive CL method for the determination of CFZM was developed. The linear dynamic range of the method was 1 ?— 10a?’7 to 4 ?— 10a?’6 mol La?’1 with a correlation coefficient of the calibration line being r2 = 0.9902. The limit of detection (LOD) was equal to 2.5 ?— 10a?’8 mol La?’1 and the relative standard deviation of the method with respect to 2.5 ?— 10a?’7 mol La?’1 CFZM was equal to 4.5% (n = 4). The applicability of the method was demonstrated for pharmaceutical preparations, and tap and ground waters. The CuO NPs were synthesized by a quick-precipitation method and their particle size distribution was analyzed. The synthesized CuO NPs were characterized by using X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), transmission electron microscopy (TEM), and scanning electron microscopy (SEM). Dynamic light scattering (DLS) was also used for analyzing the particle size-distribution of CuO NPs. In addition, the possible mechanism for the CL reaction is discussed.
机译:对文献的粗略调查显示,尽管过氧化物酶样活性是CuO纳米颗粒(CuO NPs)的众所周知且应用良好的特性,但CuO NPs的氧化酶样活性却被忽略了。分析应用。本工作报告说,具有内在氧化酶样活性的CuO NPs通过溶解氧(DO)催化鲁米诺的氧化,从而产生增强的化学发光(CL)发射。此外,还发现头孢他啶(CFZM)在碱性介质中对CuO NP催化的Luminola?O2 CL体系具有有效的衰减作用。基于这些发现,开发了一种简单而灵敏的CL法测定CFZM。该方法的线性动态范围为1?-10a?'7至4?-10a?'6 mol La?'1,校准线的相关系数为r2 = 0.9902。检测限(LOD)等于2.5?-10a?'8 mol La?'1,该方法相对于2.5 ?? 10a?'7 mol La?'1 CFZM的相对标准偏差等于4.5。 %(n = 4)。证明了该方法在药物制剂,自来水和地下水中的适用性。通过快速沉淀法合成了CuO NP,并分析了其粒径分布。合成的CuO NPs通过X射线衍射(XRD),X射线光电子能谱(XPS),透射电子显微镜(TEM)和扫描电子显微镜(SEM)进行表征。动态光散射(DLS)也用于分析CuO NPs的粒径分布。另外,讨论了CL反应的可能机理。

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