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首页> 外文期刊>IEEE sensors journal >Disposable Multiwall Carbon Nanotubes Based Screen Printed Electrochemical Sensor With Improved Sensitivity for the Assay of Daclatasvir: Hepatitis C Antiviral Drug
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Disposable Multiwall Carbon Nanotubes Based Screen Printed Electrochemical Sensor With Improved Sensitivity for the Assay of Daclatasvir: Hepatitis C Antiviral Drug

机译:基于一次性多壁碳纳米管的丝网印刷电化学传感器,具有更高的灵敏度,可用于测定达卡他韦:丙型肝炎抗病毒药

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摘要

Disposable all solid-state screen printed ion selective electrode was developed for the assay of daclatasvir (DCV) in pharmaceutical formulation and spiked human urine. The sensor is based on daclatasvir-tetraphenyl borate (DCV-TPB) as a sensing element. Incorporation of the multiwall carbon nanotubes (MWCNTs) into the ion selective membrane was found to influence the sensor sensitivity. The MWCNTs containing membrane exhibited a Nernstian slope of 31.0 +/- 1 mV/decade over a wide concentration range from 1 x 10(-5) to 1 x 10(-2) M DCV (r(2) = 0.9999) with a LOD of 8.5 x 10(-7) M in a pH 3.3 compared to a slope of 27.5 +/- 1 mV/decade, over the concentration range from 1 x 10(-4) to 1 x 10(-2) M DCV for MWCNTs-free ion selective membrane. The response time of the electrode was < 15 sec, and the potential drift was <= 0.23 mu V/min against 330.0 mu V/min for a coated glassy carbon electrode. Further characterizations, including reproducibility, chronopotentiometry, and selectivity were examined. The electrode showed high selectivity to DCV against the common interfering compounds. The electrode was applied for the assay of daclatasvir in pharmaceutical formulation and spiked urine sample with a high accuracy (+/- 2%) and precision (%RSD < 2).
机译:开发了一次性全固态丝网印刷离子选择性电极,用于测定药物制剂和加标的人类尿液中的达克他韦(DCV)。该传感器基于daclatasvir-四苯基硼酸酯(DCV-TPB)作为传感元件。发现将多壁碳纳米管(MWCNT)结合到离子选择性膜中会影响传感器的灵敏度。含MWCNT的膜在从1 x 10(-5)到1 x 10(-2)M DCV(r(2)= 0.9999)的宽浓度范围内表现出31.0 +/- 1 mV /十倍的Nernstian斜率。在1 x 10(-4)至1 x 10(-2)M DCV的浓度范围内,pH 3.3时的LOD为8.5 x 10(-7)M,斜率为27.5 +/- 1 mV /十倍用于无MWCNTs的离子选择性膜。电极的响应时间<15秒,相对于涂覆的玻碳电极的330.0μV / min,电势漂移<= 0.23μV / min。研究了进一步的表征,包括重现性,计时电位法和选择性。电极对常见干扰化合物显示出对DCV的高选择性。该电极可用于药物制剂中达拉他韦的测定以及加标尿液样品的准确性(+/- 2%)和精确度(%RSD <2)。

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