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首页> 外文期刊>ACS Omega >Role of Green Chemistry in Antipsychotics’ Electrochemical Investigations Using a Nontoxic Modified Sensor in McIlvaine Buffer Solution
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Role of Green Chemistry in Antipsychotics’ Electrochemical Investigations Using a Nontoxic Modified Sensor in McIlvaine Buffer Solution

机译:绿色化学在抗精神病学中的作用在麦克文因缓冲溶液中使用无毒修饰传感器的电化学研究

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A new low-cost green electrochemical sensor based on nontoxic polyethylene glycol (PEG) and silver nanoparticles was used to improve the sensitivity of the carbon paste electrode for the investigation of olanzapine (OLZ) in dosage arrangements and in the existence of its coadministered drug fluoxetine and in the drug formulation. Scanning electron microscopy measurements were carried out to emphasize the morphology of the electrode surface. Cyclic voltammetry and differential pulse voltammetry were used to explore the diffusion and linearity behaviors of OLZ. Impedance spectroscopy measurements were determined to investigate the ac behavior of OLZ and then an ideal electrical circuit was modeled. A linear calibration was obtained from 1.0 × 10–8 to 1.25 × 10–4 M. The limit of detection was 1.5 × 10–9 M, whereas the limit of quantification was 5 × 10–9 M. The way has been wholly authenticated concerning linearity, precision, accuracy, reproducibility, sensitivity, and selectivity.
机译:基于无毒聚乙二醇(PEG)和银纳米颗粒的新的低成本绿色电化学传感器用于改善碳浆料电极对剂量布置中的奥氮平(OLZ)的敏感性,并存在其共同介质的药物氟西汀在药物制剂中。进行扫描电子显微镜测量以强调电极表面的形态。循环伏安法和差分脉冲伏安法用于探索OLZ的扩散和线性行为。确定阻抗光谱测量测量以研究OLZ的AC行为,然后建模理想的电路。线性校准从1.0×10-8到1.25×10-4米获得。检测限为1.5×10-9米,而量化的极限为5×10-9米。方式完全认证关于线性,精度,准确性,再现性,灵敏度和选择性。

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