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基于香豆素衍生物-二氧化钛纳米粒子和离子液体的纳米复合体系:人血清和药物制剂中左旋多巴和卡比多巴的测定。

Nano composite system based on coumarin derivative-titanium dioxide nanoparticles and ionic liquid: determination of levodopa and carbidopa in human serum and pharmaceutical formulations.

机构信息

Department of Chemistry, Faculty of Science, Yazd University, Yazd, 89195-741, Islamic Republic of Iran.

出版信息

Anal Chim Acta. 2013 Oct 10;798:25-32. doi: 10.1016/j.aca.2013.08.045. Epub 2013 Aug 31.

Abstract

The combination of coumarin derivative (7-(1,3-dithiolan-2-yl)-9,10-dihydroxy-6H-benzofuro[3,2-c]chromen-6-on), (DC)-titanium dioxide nanoparticles (TiO2) and ionic liquid (IL) yields nanostructured electrochemical sensor, formed a novel kind of structurally uniform and electrocatalytic activity material. This new ionic liquid-TiO2 nanoparticles modified carbon paste electrode (IL-CTP) due to its enhanced conductivity presented very large current response from electroactive substrates. The modified electrode was characterized by different methods including a scanning electron microscope (SEM), electrochemical impedance spectroscopy (EIS) and voltammetry. A pair of well-defined quasi reversible redox peaks of coumarin derivative was obtained at the modified carbon paste electrode (DC/IL-CTP) by direct electron transfer between the coumarin derivative and the CP electrode. Dramatically enhanced electrocatalytic activity was exemplified at the DC/IL-CTP electrode, as an electrochemical sensor to study the electro oxidation of levodopa (LD) and carbidopa (CD). Based on differential pulse voltammetry (DPV), the oxidation of LD and CD exhibited the dynamic range between 0.10- 900.0 μM and 20.0-900.0 μM respectively, and the detection limit (3σ) for LD and CD were 41 nM and 0.38 μM, respectively. DPV was used for simultaneous determination of LD and CD at the DC/IL-CTP electrode, and quantitation of LD and CD in some real samples (such as tablets of Parkin-C Fort and Madopar, Sinemet, water, urine, and human blood serum) by the standard addition method.

摘要

香豆素衍生物(7-(1,3-二硫戊环-2-基)-9,10-二羟基-6H-苯并呋喃[3,2-c]色烯-6-酮)、(DC)-二氧化钛纳米粒子(TiO2)和离子液体(IL)的组合产生了纳米结构的电化学传感器,形成了一种新型结构均匀和电催化活性材料。这种新型离子液体-TiO2 纳米粒子修饰的碳糊电极(IL-CTP)由于其增强的导电性,对电活性底物呈现出非常大的电流响应。修饰电极通过不同的方法进行了表征,包括扫描电子显微镜(SEM)、电化学阻抗谱(EIS)和伏安法。在修饰的碳糊电极(DC/IL-CTP)上,香豆素衍生物和 CP 电极之间通过直接电子转移获得了一对定义良好的准可逆氧化还原峰。在 DC/IL-CTP 电极上,香豆素衍生物的电催化活性得到了显著增强,可作为电化学传感器研究左旋多巴(LD)和卡比多巴(CD)的电氧化。基于差分脉冲伏安法(DPV),LD 和 CD 的氧化在 0.10-900.0 μM 和 20.0-900.0 μM 之间呈现动态范围,LD 和 CD 的检测限(3σ)分别为 41 nM 和 0.38 μM。DPV 用于在 DC/IL-CTP 电极上同时测定 LD 和 CD,并通过标准加入法对一些实际样品(如 Parkin-C Fort 和 Madopar、Sinemet、水、尿液和人血清)中的 LD 和 CD 进行定量。

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