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A comparative study of electrochemical reduction of 4-nitrophenyl covalently grafted on gold and carbon

机译:金和碳共价接枝的4-硝基苯基电化学还原反应的比较研究

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4-Nitrophenyl layers were grafted on gold and glassy carbon surfaces by electrochemical reductive adsorption of the corresponding diazonium salt. Electrochemical conversion efficiencies of 4-nitrophenyl moieties to 4-aminophenyl moieties on gold versus on glassy carbon in a protic medium were investigated using X-ray photoelectron spectroscopy (XPS). In total contrast to all previous comparative studies showing greater electrochemical reactivity of aryl diazonium salt-derived layers on gold than on glassy carbon, a much lower rate of conversion to 4-aminophenyl was observed on gold than on glassy carbon by both cyclic voltammetry (CV) and chronoamperometry (CA) methods. The lower electron transfer rate during conversion observed on gold versus glassy carbon was proposed to be due to a mechanism related to the molecular structure rearrangement of 4-nitrophenyl during the process on glassy carbon. However, whilst complete conversion of 4-nitrophenyl to 4-aminophenyl on gold by chronoamperometry was achieved, on glassy carbon complete reduction could not be achieved under the same conditions.
机译:通过相应重氮盐的电化学还原吸附,将4-硝基苯基层接枝在金和玻璃碳表面上。使用X射线光电子能谱(XPS)研究了质子介质中金与玻璃碳上4-硝基苯基部分向4-氨基苯基部分的电化学转化效率。与所有以前的比较研究完全相反,后者显示出芳基重氮盐衍生的层在金上的电化学活性比在玻璃碳上的更高,通过两次循环伏安法(CV),在金上观察到的向4-氨基苯基的转化率比在玻璃碳上低得多)和计时安培(CA)方法。有人提出在金对玻璃碳上观察到较低的转化过程中的电子转移速率,是由于与在玻璃碳上的过程中4-硝基苯基的分子结构重排有关的机理所致。然而,尽管通过计时安培法实现了金上的4-硝基苯基向4-氨基苯基的完全转化,但是在相同条件下,在玻璃碳上无法完全还原。

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