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Application of electrochemical impedance spectroscopy for characterisation of the reduction of benzophenone in acetonitrile solutions

机译:电化学阻抗谱在表征乙腈溶液中二苯甲酮还原反应中的应用

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摘要

In this study, the reduction of benzophenone (Bzph) Ph_2C=O (Ph: phenyl group) on glassy-carbon electrode was studied in acetonitrile by means of cyclic voltammetry and electrochemical impedance spectroscopy (EIS). Bzph undergoes two one-electron reductions. The first reduction leads to the formation of radical anion [Ph_2C-O]- and appears to be reversible and diffusion controlled. The second reduction results in the generation of benzhydrol dianion [Ph_2C-O]2- and seems to be irreversible. A third quasi-reversible wave observable at more anodic potentials can be ascribed to benzhydrol free radical [Ph_2CH-O] and benzydrol anion [Ph_2CH-O]- redox couple. The EIS spectra demonstrate that the first reversible reduction of Bzph is characterised by the lowest charge transfer resistance while the resistance for the irreversible reduction is significantly greater. The electrochemical behaviour of Bzph on film consisting of multi-walled carbon nanotubes seems to be different. Thus, the findings reveal slower electrode kinetics which can be associated with electrode passivation.
机译:在这项研究中,通过循环伏安法和电化学阻抗谱法(EIS)研究了乙腈中玻碳电极上二苯甲酮(Bzph)Ph_2C = O(Ph:苯基)的还原。 Bzph经历了两次单电子还原。第一次还原导致自由基阴离子[Ph_2C-O]-的形成,并且似乎是可逆的且受扩散控制。第二次还原导致生成苯甲酰二阴离子[Ph_2C-O] 2-,并且似乎是不可逆的。在更多的阳极电势下可观察到的第三准可逆波可归因于苯氢自由基[Ph_2CH-O]和苯并吲哚阴离子[Ph_2CH-O]-氧化还原对。 EIS光谱表明,Bzph的首次可逆还原的特征是最低的电荷转移电阻,而不可逆还原的电阻则明显更大。 Bzph在由多壁碳纳米管组成的薄膜上的电化学行为似乎有所不同。因此,该发现揭示了较慢的电极动力学,其可与电极钝化有关。

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