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Flavin adenine dinucleotide as precursor for NADH electrocatalyst

机译:黄素腺嘌呤二核苷酸作为NADH电催化剂的前体

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The generation of a new electrocatalytic system for NADH after oxidizing flavin adenine dinucleotide (FAD) is shown. The oxidation is performed in alkaline medium until +1.4 V (Ag/AgCl) at graphite electrodes. The catalytic activity is ascribed to the electrooxidized moiety of FAD and not to quinone surface groups. A comparison between this catalyst and that attributed to poly(FAD) (Karyakin, A. A.; Ivanova Y. N.; Revunova, K. V.; Karyakina, E. E. Anal. Chem. 2004, 76, 2004-2009.) is presented. It is concluded that the surface quinone groups generated during the strong anodization of the electrode in acidic medium at 2-2.5 V and not the poly(FAD) are responsible for the catalytic activity described in the above mentioned work.
机译:显示了氧化黄素腺嘌呤二核苷酸(FAD)后,NADH的新电催化系统的生成。在碱性介质中进行氧化,直到石墨电极上的+1.4 V(Ag / AgCl)为止。催化活性归因于FAD的电氧化部分,而不归因于醌表面基团。给出了该催化剂与归因于聚(FAD)的催化剂之间的比较(Karyakin,A.A。; Ivanova Y.N.; Revunova,K.V。; Karyakina,E.E.Aal.Chem.2004,76,2004-2009)。可以得出结论,在2-2.5 V的酸性介质中,电极在强阳极氧化过程中产生的表面醌基团而不是聚(FAD)负责上述工作中所述的催化活性。

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