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首页> 外文期刊>IEEE sensors journal >Electrochemical Sensor Based on Mn3O4-MnCo2O4-CNT Nanocatalyst Graphene Nanoplatelets for Trace Determination of Thioridazine in Biological and Pharmaceutical Samples
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Electrochemical Sensor Based on Mn3O4-MnCo2O4-CNT Nanocatalyst Graphene Nanoplatelets for Trace Determination of Thioridazine in Biological and Pharmaceutical Samples

机译:基于Mn 3 O 4 -mnco 2 O 4 -cnt纳米催化剂石墨烯纳米纳薄物的电化学传感器进行痕量测定生物和药物样品中的硫代嗪

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In this paper, a mixed nano-catalyst of magnesium oxide (Mn3O4) and magnesium-cobalt oxide (MnCo2O4) was synthesized in the presence of carbon nanotubes (CNT) and was easily mixed with graphene nanoplatelet (GNP). The constructed nanocomposite (Mn3O4-MnCo2O4-CNT/GNP) was characterized using field emission scanning electron microscopy, transmission electron microscopy, and energy dispersive X-ray. As an application, a suspension of Mn3O4-MnCo2O4-CNT/GNP nanocomposite was prepared and drop-carted on a screen-printed electrode (SPE) for using as a portable electrochemical sensor for the determination of thioridazine (TR) with the highest catalytic effect, sensitivity, and selectivity. The differential pulse voltammetry response of the Mn3O4-MnCo2O4-CNT/GNP-modified SPE was linear TR concentration in the range of 0.02-50.0 mu mol L-1 under optimized conditions (phosphate buffer, pH 7.0; drop-casting volume 20 mu L; nanocatalyst 200 mu L; and accumulation time 80 s), with a detection limit of 1.5 nmol L-1 (S/N = 3). The fabricated electrochemical sensor showed a selective amperometry response toward TR concentration among other interfering species. Relative standard deviation (RSD) at two different concentrations of TR, (10.0 and 40.0 mu mol L-1) was, respectively, 4.9% and 4.5%, exhibited good reproducibility. Finally, the proposed sensor was successfully applied for the determination of the TR in urine, serum, and a TR pharmaceutical formulation.
机译:本文在碳纳米管(CNT)存在下合成了氧化镁(MN3O4)和氧化镁(MNCO2O4)的混合纳米催化剂,并易于与石墨烯纳米片(GNP)混合。使用现场发射扫描电子显微镜,透射电子显微镜和能量分散X射线表征构造的纳米复合材料(MN3O4-MNCO2O4-CNT / GNP)。作为施用,制备Mn 3 O 4 -MNCO2O4-CNT / GNP纳米复合物的悬浮液并在丝网印刷电极(SPE)上,用作便携式电化学传感器,用于测定具有最高催化作用的硫嗪(TR) ,灵敏度和选择性。 Mn3O4-mnCo2O4-CNT / GNP改性SPE的差分脉冲伏安响应是在优化条件下的0.02-50.0μmol1-1的线性TR浓度(磷酸盐缓冲液,pH 7.0;滴铸卷20 mu l ;纳米催化剂200μl;和累积时间80 s),检测限为1.5 nmol l-1(s / n = 3)。制造的电化学传感器显示了对其他干扰物种中的TR浓度的选择性安培响应。两种不同浓度Tr的相对标准偏差(RSD)分别为4.9%和4.5%,表现出良好的再现性。最后,建议的传感器成功地应用于尿液,血清和TR药物制剂中的TR的测定。

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