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The study of synergistic effects of ZnO decorated graphene nanosheets and room temperature ionic liquid for analysis of raloxifene in pharmaceutical samples

机译:ZnO装饰石墨烯纳米液和室温离子液体的协同作用研究,用于分析药物样品中的Raloxifene

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Raloxifene is an important estrogen receptor modulator with many side effects, and determination of this drug is very important in biological samples. The present research describes a ZnO decorated graphene nanosheet (ZnO/GrNS)/ionic liquid based electrochemical sensor for the measurement of raloxifene. The ZnO/GrNS were synthesized via direct chemical precipitation process and characterized using the SEM-EDAX technique. Due to excellent conductivity of ZnO/GrNS and ionic liquid, the suggested electrochemical sensor exhibited improved electrochemical response for raloxifene. After optimization of electrochemical conditions and at the best state, the fabricated electrode displayed two linear dynamic ranges (1.0 x 10(-10)-5.0 x 10(-6) and 1.0 x 10(-6)-5.0 x 10(-4) M) with a detection limit (DL) of 0.07 nM. Quantification analysis of raloxifene was successfully evaluated using the suggested sensor in pharmaceutical samples.
机译:Raloxifene是一种重要的雌激素受体调节剂,具有许多副作用,并且该药物的测定在生物样品中非常重要。 本研究描述了一种用于测量Raloxifenes的ZnO装饰石墨烯纳米片(ZnO / GRN)/离子液体基电化学传感器。 通过直接化学沉淀工艺合成ZnO / GN,并使用SEM-EDAX技术表征。 由于ZnO / GRN和离子液体的优异导电性,所提出的电化学传感器表现出Raloxifenes的改善的电化学响应。 在优化电化学条件和最佳状态下,制造电极显示两个线性动态范围(1.0×10( - 10)-5.0×10(-6)和1.0×10(-6)-5.0 x 10(-4 )m)检测限为0.07nm。 使用所提出的传感器在药物样品中成功评估了Raloxifene的定量分析。

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