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首页> 外文期刊>Bioelectrochemistry >Electrochemical and solid-phase synthetic modification of glassy carbon electrodes with dihydroxybenzene compounds and the electrocatalytic oxidation of NADH
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Electrochemical and solid-phase synthetic modification of glassy carbon electrodes with dihydroxybenzene compounds and the electrocatalytic oxidation of NADH

机译:二羟基苯化合物对玻碳电极的电化学和固相合成修饰及NADH的电催化氧化

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摘要

We report the preparation, using electrochemical and solid-phase synthesis, and characterisation of a 26 member library of 13 dihydroxybenzene derivatives covalently attached to glassy carbon through ethylenediamine (EDA) and C6H4CH2NH- linkers. First, Boc-protected EDA or Boc-NHCH2C6H4 were electrochemically attached to the GC surface. After Boc-deprotection, dimethoxybenzoyl chlorides were coupled to the EDA and C6H4CH2NH- linkers using solid-phase synthesis followed by deprotection of the methoxy groups to give the corresponding dihydroxybenzene compounds. Surface coverage and electrochemical parameters of the dihydroxybenzene modified electrodes were evaluated in parallel using cyclic voltammetry. The mid-peak potentials, E-mp, and surface coverages for the 13 dihydroxybenzene derivatives were found to be independent of the choice of linker. The mid-peak potentials of the immobilised dihydroxybenzene derivatives varied between 0.0 and 260 mV vs. SCE and their surface coverages varied between 0.07 and 1.1 nmol cm(-2), depending on the pattern of substitution of the dihydroxybenzene ring. The electrocatalytic activities of the library were evaluated for mediation of NADH oxidation, and the ortho-dihydroxybenzene derivatives were found to have higher catalytic activity.
机译:我们报告的制备,使用电化学和固相合成,并表征通过乙二胺(EDA)和C6H4CH2NH-接头共价连接到玻璃碳的13个二羟基苯衍生物的26个成员库。首先,将Boc保护的EDA或Boc-NHCH2C6H4电化学连接到GC表面。 Boc脱保护后,使用固相合成方法将二甲氧基苯甲酰氯与EDA和C6H4CH2NH-连接基偶联,然后对甲氧基进行脱保护,得到相应的二羟基苯化合物。使用循环伏安法并行评估了二羟基苯修饰电极的表面覆盖率和电化学参数。发现13种二羟基苯衍生物的中峰电势,E-mp和表面覆盖率与接头的选择无关。相对于SCE,固定化二羟基苯衍生物的中峰电势在0.0和260 mV之间变化,其表面覆盖率在0.07和1.1 nmol cm(-2)之间变化,具体取决于二羟基苯环的取代方式。评价了该文库的电催化活性对NADH氧化的介导作用,发现邻二羟基苯衍生物具有较高的催化活性。

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