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首页> 外文期刊>Angewandte Chemie >The Long-Term Stability of KO2 in K-O-2 Batteries
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The Long-Term Stability of KO2 in K-O-2 Batteries

机译:K-O-2电池中KO2的长期稳定性

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摘要

The rechargeable K-O-2 battery is recognized as a promising energy storage solution owing to its large energy density, low overpotential, and high coulombic efficiency based on the single-electron redox chemistry of potassium superoxide. However, the reactivity and long-term stability of potassium superoxide remains ambiguous in K-O-2 batteries. Parasitic reactions are explored and the use of ion chromatography to quantify trace amounts of side products is demonstrated. Both quantitative titrations and differential electrochemical mass spectrometry confirm the highly reversible single-electron transfer process, with 98% capacity attributed to the formation and decomposition of KO2. In contrast to the Na-O-2 counterparts, remarkable shelf-life is demonstrated for K-O-2 batteries owing to the thermodynamic and kinetic stability of KO2, which prevents the spontaneous disproportionation to peroxide. This work sheds light on the reversible electrochemical process of K+ + e(-) + O-2 - KO2.
机译:由于其基于超氧化钾的单电子氧化还原化学,可充电K-O-2电池被认可为有前途的能量存储解决方案。然而,在K-O-2电池中,过氧化钾的反应性和长期稳定性仍然存在模糊。探索寄生反应,并使用离子色谱法量化痕量侧产物。定量滴定和差分电化学质谱法确认高度可逆的单电子转移过程,其容量为98%,归因于KO2的形成和分解。与Na-O-2对应物相比,由于KO2的热力学和动力学稳定性,对于K-O-2电池而言,对K-O-2电池进行了显着的保质期,这防止了过氧化物的自发性歧化。这项工作揭示了K + + E( - )+ O-2 +的可逆电化学方法。 - & KO2。

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