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An innovative electrochemical platform for the sensitive determination of the hepatitis B inhibitor Entecavir with ionic liquid as a mediator

机译:一种创新的电化学平台,用于与离子液体为介质的乙型肝炎抑制剂Encavir的敏感性电化学平台

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We report on a facile method to fabricate nanoparticles-modified carbon paste electrodes with high sensitivity and reactivity towards the electrochemical determination of Entecavir (ENT), allowing for optimal charge transfer/electrode kinetics. The use of ionic liquid provides wider electrochemical window that facilitates the effective determination of ENT. The electrochemical platform is based on mixing NiFe2O4 nanoparticles with room temperature ionic liquids into carbon paste electrode (NiFe2O4-IL/CPE). The synthesized composite is characterized using different techniques. Outstandingly, the physical properties of the NiFe2O4 nanoparticles, regarding the shape, size, structure, area, and porosity control the electrochemical processes at the surface of the sensor. The sensing of ENT via square wave voltammetry (SWV) is found to exhibit two wide linear dynamic ranges of 0.80 x 10(-8)-2.20 x 10(-6) mol L-1 and 2.20 x 10(-6)-1.55 x 10(-4) mol L-1 at pH 2.0. The NiFe2O4-IL/CPE sensor is explored towards the analysis of ENT in urine, plasma and pharmaceutical products. The fabricated NiFe2O4-IL/CPE has the potential to be used as a clinical assay and QA in pharmaceutical products. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们报道了一种用于制造具有高灵敏度和反应性的纳米颗粒改性碳浆料的容纳方法,朝向埃塞克拉维(ENT)的电化学测定,允许最佳电荷转移/电极动力学。离子液体的使用提供较宽的电化学窗,便于耳鼻喉术的有效测定。电化学平台基于将NiFe2O4纳米颗粒与室温离子液体混合到碳浆料电极(NiFe2O4-IL / CPE)中。合成的复合材料的特征在于使用不同的技术。突出地,NiFe2O4纳米颗粒的物理性质,关于形状,尺寸,结构,面积和孔隙率控制传感器表面的电化学过程。发现通过方波伏安法(SWV)对孔的感测表现出0.80×10(-8)-2.20×10(-6)Mol L-1和2.20 x 10(-6)-1.55的两个宽线性动态范围X 10(-4)摩尔L-1在pH 2.0时。探讨了NiFe2O4-IL / CPE传感器,旨在分析尿液,血浆和药品中的耳鼻体。制造的NiFe2O4-IL / CPE具有用作药物产品中的临床测定和QA。 (c)2020 Elsevier B.v.保留所有权利。

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