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使用多壁碳纳米管和天然低共熔溶剂修饰的碳糊电极对诺司卡品和劳拉西泮进行电化学测定。

Electrochemical Measurement of Noscapine and Lorazepam Using a Carbon Paste Electrode Modified with Multi-walled Carbon Nanotubes and Natural Deep Eutectic Solvent.

作者信息

Vafadar Maryam, Zarei Ebrahim, Asghari Alireza

机构信息

Department of Chemistry, Semnan University, Semnan, Iran.

Department of Basic Sciences, Farhangian University, Tehran, Iran.

出版信息

Iran J Pharm Res. 2021 Summer;20(3):490-505. doi: 10.22037/ijpr.2021.114557.14911.

Abstract

In the present study, simultaneous voltammetric determination of noscapine (NOS) and lorazepam (LOR) was studied for the first time. A carbon paste electrode modified with multi-walled carbon nanotubes (MWCNTs) and natural deep eutectic solvent (NANADES) (MWCNTs/NADES/CPE) was used for this purpose. Electrochemical impedance spectroscopy (EIS) was applied for the investigation of the electron transfer rate of [Fe(CN)6] as a redox couple probe on the surface of the MWCNTs/NADES/CPE. The modified electrode preserved and combined the properties of the individual modifiers synergistically. A significant enhancement in the peak current responses of NOS and LOR was observed on the modified electrode surface compared to the bare electrode. Under the optimal conditions, the peak current of differential pulse voltammograms was linearly dependent on analyte concentration in the range of 3-1700 µM for NOS and 1-2220 µM for LOR. The limit of detection (LOD) for NOS and LOR was 1.90 µM and 0.69 µM, respectively. Finally, this strategy was also employed for the determination of NOS and LOR in pharmaceutical samples.

摘要

在本研究中,首次对那可丁(NOS)和劳拉西泮(LOR)进行了同时伏安法测定。为此使用了一种用多壁碳纳米管(MWCNTs)和天然深共熔溶剂(NANADES)修饰的碳糊电极(MWCNTs/NADES/CPE)。采用电化学阻抗谱(EIS)研究了[Fe(CN)6]作为氧化还原偶探针在MWCNTs/NADES/CPE表面的电子转移速率。修饰电极协同保留并结合了各个修饰剂的特性。与裸电极相比,在修饰电极表面观察到NOS和LOR的峰电流响应有显著增强。在最佳条件下,差分脉冲伏安图的峰电流在3 - 1700 μM(对于NOS)和1 - 2220 μM(对于LOR)范围内与分析物浓度呈线性关系。NOS和LOR的检测限(LOD)分别为1.90 μM和0.69 μM。最后,该策略也用于药物样品中NOS和LOR的测定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/761b/8653658/44d2f093793c/ijpr-20-490-g001.jpg

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