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Anionic redox reaction in layered NaCr2/3Ti1/3S2 through electron holes formation and dimerization of S–S

机译:NaCr2 / 3Ti1 / 3S2层中通过电子空穴形成和S–S二聚化的阴离子氧化还原反应

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摘要

The use of anion redox reactions is gaining interest for increasing rechargeable capacities in alkaline ion batteries. Although anion redox coupling of S2− and (S2)2− through dimerization of S–S in sulfides have been studied and reported, an anion redox process through electron hole formation has not been investigated to the best of our knowledge. Here, we report an O3-NaCr2/3Ti1/3S2 cathode that delivers a high reversible capacity of ~186 mAh g−1 (0.95 Na) based on the cation and anion redox process. Various charge compensation mechanisms of the sulfur anionic redox process in layered NaCr2/3Ti1/3S2, which occur through the formation of disulfide-like species, the precipitation of elemental sulfur, S–S dimerization, and especially through the formation of electron holes, are investigated. Direct structural evidence for formation of electron holes and (S2)n− species with shortened S–S distances is obtained. These results provide valuable information for the development of materials based on the anionic redox reaction.
机译:阴离子氧化还原反应的使用对于增加碱性离子电池的可再充电容量引起了兴趣。尽管已经研究并报道了通过硫化物中S–S的二聚作用使S 2-和(S2) 2-发生阴离子氧化还原偶联,但通过电子空穴形成的阴离子氧化还原过程据我们所知,尚未进行调查。在这里,我们报道了一种O3-NaCr2 / 3Ti1 / 3S2阴极,它基于阳离子和阴离子氧化还原过程提供了约186 mAh g -1 (0.95 Na)的高可逆容量。层状NaCr2 / 3Ti1 / 3S2中硫阴离子氧化还原过程的各种电荷补偿机制,是通过形成二硫化物样,元素硫的沉淀,S–S二聚化,特别是通过形成电子空穴而发生的。调查。获得了形成结构简单的电子空穴和(S2) n-物种(具有较短的S–S距离)的证据。这些结果为基于阴离子氧化还原反应的材料开发提供了有价值的信息。

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