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Determination of pramipexole by using its quenching and retarding effects on the CuO nanoparticle-HCO3--H2O2 chemiluminescence reaction

机译:用CuO纳米粒子-HCO3 - H2O2化学发光反应用淬火和延迟效应测定普拉克索

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In this work, it was found that pramipexole (PPX) could decrease the intensity and rate of the CuO NP-catalyzed HCO3--H2O2 CL system. Based on these findings, the CuO NPs-HCO3--H2O2 CL system was used for the determination of PPX. With this aim, the experimental parameters influencing the CL reaction were optimized to achieve the highest effect of PPX on the CL system. After optimization, two calibration graphs including CL intensity versus PPX concentration and time of appearance of the maximum CL intensity (T-max) versus PPX concentration were plotted. The linear range for the calibration graph based on CL intensity versus PPX concentration was 1.0x10(-6) to 2.0x10(-5) mol L-1 with the correlation coefficient of the calibration line being r(2) = 0.9938. The limit of detection (LOD) was equal to 7.9x10(-7) mol L-1 and the relative standard deviation of the method with respect to 1.0x10(-5) mol L-1 PPX was equal to 4.7% (n = 10). The linear range for the calibration graph based on T-max versus PPX concentration was 7.0x10(-7) to 5.0x10(-4) mol L-1 with the correlation coefficient of the calibration line being r(2) = 0.9983. The LOD was equal to 3.4x10(-7) mol L-1 and the relative standard deviation of the method with respect to 1.0x10(-5) mol L-1 PPX was equal to 3.19% (n = 10). The utilized CuO NPs were prepared by exploiting a quick precipitation technique and were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM) and dynamic light scattering (DLS) techniques. The developed method was successfully applied to the determination of PPX in pharmaceutical formulations and spiked tap water.
机译:在这项工作中,发现普拉克索(PPX)可以降低CuO NP催化HCO3 - H2O2 CL系统的强度和速率。基于这些发现,CuO NPS-HCO3 - H2O2 CL系统用于测定PPX。通过这种目的,优化影响CL反应的实验参数,以达到PPX对CL系统的最高效果。绘制了在优化之后,绘制了两个校准图,包括CL强度与PPX浓度和最大CL强度(T-MAX)与PPX浓度的外观。基于CL强度与PPX浓度的校准图的线性范围为1.0×10(-6)至2.0×10(-5)mol L-1,具有校准线的相关系数为R(2)= 0.9938。检测限(LOD)等于7.9x10(-7)摩尔L-1,并且该方法相对于1.0×10(-5)摩尔L-1 ppx的相对标准偏差等于4.7%(n = 10)。基于T-MAX与PPX浓度的校准图的线性范围为7.0×10(-7)至5.0×10(-4)摩尔L-1,具有校准线的相关系数为R(2)= 0.9983。 LOD等于3.4x10(-7)mol L-1,并且方法相对于1.0×10(-5)摩尔L-1 ppx的相对标准偏差等于3.19%(n = 10)。通过利用快速沉淀技术来制备使用的CuO NPS,其特征在于X射线衍射(XRD),扫描电子显微镜(SEM)和动态光散射(DLS)技术。成功地应用于药物制剂中PPX的方法和尖刺水。

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