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首页> 外文期刊>Scientific reports. >Operando characterization of cathodic reactions in a liquid-state lithium-oxygen micro-battery by scanning transmission electron microscopy
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Operando characterization of cathodic reactions in a liquid-state lithium-oxygen micro-battery by scanning transmission electron microscopy

机译:通过扫描透射电子显微镜通过扫描液态锂 - 氧微电池中的阴极反应的曲目表征

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摘要

Rechargeable non-aqueous lithium-oxygen batteries with a large theoretical capacity are emerging as a high-energy electrochemical device for sustainable energy strategy. Despite many efforts made to understand the fundamental Li-O2 electrochemistry, the kinetic process of cathodic reactions, associated with the formation and decomposition of a solid Li2O2 phase during charging and discharging, remains debate. Here we report direct visualization of the charge/discharge reactions on a gold cathode in a non-aqueous lithium-oxygen micro-battery using liquid-cell aberration-corrected scanning transmission electron microscopy (STEM) combining with synchronized electrochemical measurements. The real-time and real-space characterization by time-resolved STEM reveals the electrochemical correspondence of discharge/charge overpotentials to the nucleation, growth and decomposition of Li2O2 at a constant current density. The nano-scale operando observations would enrich our knowledge on the underlying reaction mechanisms of lithium-oxygen batteries during round-trip discharging and charging and shed lights on the strategies in improving the performances of lithium-oxygen batteries by tailoring the cathodic reactions.
机译:具有很大理论能力的可充电非水锂电池作为可持续能源战略的高能电化学装置出现。尽管许多努力了解基本的Li-O2电化学,但在充电和放电期间与固体Li2O2相的形成和分解相关的阴极反应的动力学过程仍然是辩论。在这里,我们通过与同步电化学测量组合的液体细胞像差校正的扫描透射电子显微镜(茎)报告在非水锂 - 氧微型电池中的金阴极上的电荷/放电反应的直接可视化。通过时间分离的杆的实时和实时特征揭示了在恒定电流密度下对核切割,生长和Li 2 O 2的成核,生长和分解的电化学对应。纳米规模的手术机观察将丰富我们对循环氧气电池的潜在反应机制的知识,以在往返和充电和棚灯上通过定制阴极反应来改善锂 - 氧气电池性能的策略。

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