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Direct electrochemistry of glucose oxidase entrapped in nano gold particles-ionic liquid-N,N-dimethylformamide composite film on glassy carbon electrode and glucose sensing

机译:玻碳电极上纳米金粒子-离子液体-N,N-二甲基甲酰胺复合膜中截留的葡萄糖氧化酶的直接电化学及葡萄糖传感

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The direct electrochemistry of glucose oxidase (GOD) entrapped in nano gold particles (NAs)-N,N-dimemylformarnide (DMF)-1-butyl-3-methylimidazolium hexafluophosphate (BMIMPF6) composite film on a glassy carbon electrode (NAs-DMF-GOD (BMIMPF6)/GC) has been investigated for first time.The immobilized GOD exhibits a pair of well-defined reversible peaks in 0.050 M pH 5 phosphate solutions (PS),resulting from the redox of flavin adenine dinucleotide (FAD) in GOD.The peak currents are three times as large as those of GOD-NAs-DMF film coated GC electrode (i.e.NAs-DMF-GOD (water)/GC).In addition,the NAs-DMF-GOD (BMIMPF6) composite material has higher thermal stability than NAs-DMF-GOD (water).Results show that ionic liquid BMIMPF6,DMF and NAs are requisite for GOD to exhibit a pair of stable and reversible peaks.Without any of them,the peaks of GOD become small and unstable.Upon the addition of glucose,the peak currents of GOD decrease and a new cathodic peak occurs at -0.8 V (versus SCE),which corresponds to the reduction of hydrogen peroxide (H2O2) generated by the catalytic oxidation of glucose.The peak current of the new cathodic peak and the glucose concentration show a linear relationship in the ranges of 1.0 x 10~(-7) to 1.0 x 10~(-6) M and 2.0 x 10~(-6) to 2.0 x 10~(-5) M.The kinetic parameter I_(max) of H2O2 is estimated to be 1.19 x 10~(-6) A and the apparent K_m (Michaelis-Menten constant) for the enzymatic reaction is 3.49 mu M.This method has been successfully applied to the determination of glucose in human plasma and beer samples,and the average recoveries are 97.2% and 99%,respectively.
机译:玻碳电极上的纳米金颗粒(NAs)-N,N-二甲酰基甲酰胺(DMF)-1-丁基-3-甲基咪唑鎓六氟磷酸盐(BMIMPF6)复合膜中截留的葡萄糖氧化酶(GOD)的直接电化学首次研究了GOD(BMIMPF6)/ GC。固定的GOD在0.050 M pH 5磷酸盐溶液(PS)中显示一对明确定义的可逆峰,这是由于黄素腺嘌呤二核苷酸(FAD)在GOD中的氧化还原所致峰值电流是GOD-NAs-DMF薄膜涂层GC电极(即NAs-DMF-GOD(水)/ GC)的三倍。此外,NAs-DMF-GOD(BMIMPF6)复合材料具有结果表明,离子液体BMIMPF6,DMF和NAs是GOD呈现一对稳定且可逆的峰所必需的。没有任何一个,GOD的峰会变得很小而不稳定。随着葡萄糖的添加,GOD的峰值电流降低,并且在-0.8 V处出现一个新的阴极峰(相对于SCE), ch对应于葡萄糖催化氧化产生的过氧化氢(H2O2)的还原。新阴极峰的峰值电流与葡萄糖浓度在1.0 x 10〜(-7)至1.0 x的范围内呈线性关系。 10〜(-6)M和2.0 x 10〜(-6)至2.0 x 10〜(-5)M.H2O2的动力学参数I_(max)估计为1.19 x 10〜(-6)A和酶促反应的表观K_m(Michaelis-Menten常数)为3.49μM。该方法已成功应用于人血浆和啤酒样品中葡萄糖的测定,平均回收率分别为97.2%和99%。

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