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Determination of metformin based on amplification of its voltammetric response by a combination of molecular wire and carbon nanotubes

机译:基于分子线和碳纳米管结合的伏安法反应测定二甲双胍

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Molecular wires containing copper(II) (CuMW), in the form of the coordination polymer (Cu(II)(4)(bpp)(4)(maa)(8)(H2O)(2)).2H(2)O (bpp=1,3-bis(4-pyridyl)propane, maa=2-methylacrylic acid), and multiwalled carbon nanotubes (CNT) have been combined to prepare a paste electrode (CuMW/CNT/PE). The voltammetric response of the CuMW/CNT/PE to metformin (MET) was significantly greater than that of electrodes prepared from other materials, because of both the surface effect of CuMW and CNT and coordination of MET with the Cu(II) ion in the CuMW. A novel voltammetric method for determination of MET is proposed. In pH 7.2 Britton-Robinson buffer, using single sweep voltammetry, the second-order derivative peak current for oxidation of MET at 0.97 V (relative to SCE) increased linearly with MET concentration in the range 9.0 x 10(-7)-5.0 x 10(-5) mol L-1 and the detection limit was 6.5 x10(-7) mol L-1.
机译:以配位聚合物(Cu(II)(4)(bpp)(4)(maa)(8)(H2O)(2))。2H(2)形式包含铜(II)(CuMW)的分子线将O(bpp = 1,3-双(4-吡啶基)丙烷,maa = 2-甲基丙烯酸)和多壁碳纳米管(CNT)组合在一起以制备糊状电极(CuMW / CNT / PE)。 CuMW / CNT / PE对二甲双胍(MET)的伏安响应显着大于由其他材料制备的电极,这是因为CuMW和CNT的表面效应以及MET与Cu(II)离子的配位。 CuMW。提出了一种测定MET的伏安法。在pH 7.2 Britton-Robinson缓冲液中,使用单次扫描伏安法,MET的氧化在0.97 V(相对于SCE)的二阶导数峰值电流随MET浓度在9.0 x 10(-7)-5.0 x范围内线性增加10(-5)mol L-1,检出限为6.5 x10(-7)mol L-1。

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