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Hurdles to organic quinone flow cells. Electrode passivation by quinone reduction in acetonitrile Li electrolytes

机译:成为有机醌流动池的障碍。乙腈Li电解质中醌还原引起的电极钝化

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摘要

The uses of quinones in Redox Flow Batteries (RFBs) has been mainly circumscribed to aqueous solutions (of derivatives with polar groups) despite a larger solubility and wider electrochemical window provided by organic media. The redox mechanism of quinones in protic media is simpler and better known than in aprotic media, where radical species are involved. This paper reports the behaviour of methyl-p-benzoquinone (MBQ) under electrochemical reduction conditions in a LiClO[sbnd]CHCN electrolyte and various working electrodes. We detected the reversible generation of a bright green coating on the working electrode and the subsequent formation of a polymer (the nature of which depends on the presence or absence of oxygen). These coatings prevent the regular redox process of methyl-p-benzoquinone from taking place on the surface of the electrode and is generated regardless of the electrode material used or the presence of O in solution. In addition to MBQ, the green passivating layer was also found for less sterically hindered quinones such as p-benzoquinone or 1,4-naphthoquinone, but not for anthraquinone. We have also shown the central role of Li in the formation of this green layer. This work provides important guidelines for the final use of quinones in RFBs with organic electrolytes.
机译:尽管有机介质提供了更大的溶解度和更宽的电化学窗口,但在氧化还原液流电池(RFB)中醌的使用主要限于水溶液(具有极性基团的衍生物)。质子介质中醌的氧化还原机理比非质子介质中涉及自由基物种的氧化还原机理更简单和更广为人知。本文报道了在LiClObCHCN电解质和各种工作电极中,电化学还原条件下甲基对苯醌(MBQ)的行为。我们检测到工作电极上可逆绿色涂层的可逆生成以及随后形成的聚合物(其性质取决于氧气的存在与否)。这些涂层可防止甲基对苯醌的常规氧化还原过程在电极表面发生,并且无论所用电极材料或溶液中是否存在O均可产生。除了MBQ外,绿色钝化层还发现了对位阻较少的醌,例如对苯醌或1,4-萘醌,但对蒽醌却没有。我们还显示了Li在绿色层形成中的核心作用。这项工作为在含有机电解质的RFB中最终使用醌提供了重要的指导原则。

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