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Electrochemical sensor based on a carbon paste electrode modified by graphene nanosheets and molecularly imprinted polymer nanoparticles for determination of a chlordiazepoxide drug

机译:基于石墨烯纳米晶片和分子印迹聚合物纳米粒子改性的电化学传感器用于测定氯芳基氧化物药物

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A selective and sensitive voltammetric sensor based on a graphenea€“carbon paste electrode (GCPE) modified with imprinted polymer nanoparticles (nano-MIP) for the determination of a chlordiazepoxide (CDP) drug has been developed. The chlordiazepoxide binding experiments indicated that the sensors modified by the nano-MIP have much higher adsorption ability for the CDP molecules than the non-imprinted polymer nanoparticle (nano-NIP) based sensor. Moreover, using graphene in the preparation of the CPE leads to a significant improvement in the response of the electrode to the CDP drug. The effect of the crosslinker type and amount of the template molecule on the MIP nanoparticles properties and other parameters affecting the sensor response were studied. Under optimized extraction and analysis conditions, the peak current obtained at the nano-MIP modified graphenea€“carbon paste electrode (nano-MIP-GCPE) was proportional to the chlordiazepoxide concentration within the range from 6.0 ?— 10a?’10 to 7.5 ?— 10a?’8 M (R2 = 0.9982) with a detection limit of 2.61 ?— 10a?’10 M. The repeatability of the developed sensor in terms of relative standard deviation was 3.2%. This sensor was successfully applied for the determination of chlordiazepoxide in pharmaceutical formulations and biological fluid samples.
机译:已经开发了一种选择性和敏感的伏安传感器,用于测定Chlordiazexide(CDP)药物的压印聚合物纳米颗粒(Nano-MIP)改性的石墨膜“碳糊电极(GCPE)。氯芳基氧化物结合实验表明,通过纳米壁修饰的传感器具有比非印迹聚合物纳米颗粒(纳米Nip)的传感器的CDP分子具有更高的吸附能力。此外,在CPE的制备中使用石墨烯导致电极对CDP药物的响应显着改善。研究了交联剂类型和模板分子的量对MIP纳米颗粒性质和影响传感器响应的其他参数的影响。在优化的提取和分析条件下,在纳米MIP改性的石墨圈€“碳浆料电极(纳米-MIP-GCPE)在碳糊电极(纳米-MIP-GCPE)中获得的峰值电流与氯芳基氧化物浓度与6.0 -10〜10-10至7.5的范围成比例。 - 10A?''''''8 m(R2 = 0.9982),检测限为2.61? - 10a≤10米。在相对标准偏差方面,发达传感器的可重复性为3.2%。该传感器成功地应用于药物制剂和生物流体样品中的氯芳基氧化物的测定。

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