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Electrochemical behaviour of Vanadium(V) on electrochemically synthesized magnetite film electrodes

机译:钒(V)对电化学合成磁铁矿膜电极的电化学行为

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In this work, the electrochemical response of Vanadium(V) species on magnetite film electrodes is investigated. Magnetite is deposited electrochemically on glassy carbon electrodes, with an intermediate layer of poly(thiophene) to avoid water infiltration. These electrodes show good reproducibility and stability up to pH = 2.0. Mononuclear V(V) species show low electroactivity on this surface. Cyclic voltammetry at low V(V) concentration shows that it is electroactive only at pH 3. i.e. as VO2+. A single reduction peak is observed at similar to-0.7 V vs SCE (at 50 mV s(-1)), and an oxidation one at similar to 0.5 V vs SCE, indicating high irreversibility of the V (V)/V(IV) couple; these peaks are found to be solution phase reactions. These features are interpreted in terms of mononuclear V species. At higher V concentrations, where polymeric V(V) species are dominant, a somewhat higher electroactivity is observed, with two reduction peaks and two/three oxidation peaks.
机译:在这项工作中,研究了研究钒(V)物种对磁铁矿膜电极的电化学响应。 磁铁矿在玻璃碳电极上电化学沉积,具有聚(噻吩)的中间层,以避免水渗透。 这些电极显示出良好的再现性和稳定性至pH = 2.0。 单核v(v)物种在该表面上显示出低电激。 低V(v)浓度下的循环伏安法表明它仅在pH& 3.即作为VO2 +。 在类似于-0.7V VS SCE(在50mV S(-1))中观察到单一的还原峰,并且氧化一个类似于0.5V VS SCE,表示V(V)/ V(IV)的高不可逆转性 ) 夫妻; 发现这些峰是溶液相反应。 这些功能在单核v物种方面被解释。 在较高的V浓度下,在聚合物V(V)种所占优势的情况下,观察到稍微较高的电激性,两种还原峰和两个/三个氧化峰。

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