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首页> 外文期刊>Journal of the Serbian Chemical Society >A nanostructured suitable platform based on multi wall carbon nanotubes and graphene nano sheets composite for determination of mefenamic acid
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A nanostructured suitable platform based on multi wall carbon nanotubes and graphene nano sheets composite for determination of mefenamic acid

机译:基于多壁碳纳米管和石墨烯纳米片复合材料的纳米结构适合平台用于测定甲芬那酸

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A mefenamic acid sensor was prepared by the modification of a glassy carbon electrode (GCE) with graphene nano-sheets (Gr) and multi wall carbon nanotubes (MWCNT). The designed sensor (MWCNT/Gr/GCE) indicated an electrocatalytic behaviour when applied for mefenamic acid (MFA) oxidation due to good conductivity, low electron transfer resistance and catalytic effect. The suggested sensor revealed a lower overvoltage and enhanced current compared with bare GCE for the oxidation of MFA. The observations indicated that the oxidation potential of MFA is decreased more than 200 mV using the designed sensor. The percentages of MWCNTs and Gr nano materials, and pH solution were optimized. Under the optimum conditions, some kinetic parameters, such as surface coverage in a 0.5 mM [Fe(CN)6]3-/4- solution was obtained by cyclic voltammetric method. The diffusion coefficient of MFA (D) was calculated to be 2.88×10-6 cm2 s-1 by chronoamperometeric technique. The MWCNT/Gr/GCE sensor exhibited a linear dynamic range for MFA (2– 100 μM) with a detection limit of 0.66 μM by differential pulse voltammetry (DPV) technique. This sensor revealed a suitable applicability for determination of MFA in real samples (drug samples and serum solutions).
机译:通过用石墨烯纳米片(Gr)和多壁碳纳米管(MWCNT)修饰玻碳电极(GCE)来制备甲芬那酸传感器。设计的传感器(MWCNT / Gr / GCE)由于具有良好的导电性,低的电子转移阻力和催化作用,因此在用于甲芬那酸(MFA)氧化时显示出电催化行为。与裸露的GCE相比,建议的传感器在MFA的氧化方面显示出更低的过电压和更高的电流。观察结果表明,使用设计的传感器,MFA的氧化电位降低了200 mV以上。优化了MWCNTs和Gr纳米材料的百分比以及pH溶液。在最佳条件下,通过循环伏安法获得了一些动力学参数,如在0.5 mM [Fe(CN)6] 3- / 4-溶液中的表面覆盖率。通过计时电流法将MFA(D)的扩散系数计算为2.88×10-6 cm2 s-1。 MWCNT / Gr / GCE传感器显示出MFA(2-100μM)的线性动态范围,通过差分脉冲伏安法(DPV)技术的检测极限为0.66μM。该传感器显示出适用于测定实际样品(药物样品和血清溶液)中的MFA的适用性。

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