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首页> 外文期刊>Angewandte Chemie >Singlet Oxygen Formation during the Charging Process of an Aprotic Lithium-Oxygen Battery
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Singlet Oxygen Formation during the Charging Process of an Aprotic Lithium-Oxygen Battery

机译:非特性锂氧电池充电过程中的单线氧形成

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Aprotic lithium-oxygen (Li-O-2) batteries have attracted considerable attention in recent years owing to their outstanding theoretical energy density. A major challenge is their poor reversibility caused by degradation reactions, which mainly occur during battery charge and are still poorly understood. Herein, we show that singlet oxygen ((1)Delta(g)) is formed upon Li2O2 oxidation at potentials above 3.5 V. Singlet oxygen was detected through a reaction with a spin trap to form a stable radical that was observed by time- and voltage-resolved in operando EPR spectroscopy in a purpose-built spectroelectrochemical cell. According to our estimate, a lower limit of approximately 0.5% of the evolved oxygen is singlet oxygen. The occurrence of highly reactive singlet oxygen might be the long-overlooked missing link in the understanding of the electrolyte degradation and carbon corrosion reactions that occur during the charging of Li-O-2 cells.
机译:由于其出色的理论能源密度,非特性锂锂氧(Li-O-2)电池引起了相当大的关注。 主要挑战是由于劣化反应引起的可逆性差,这主要发生在电池充电期间并且仍然不知所措。 在此,我们表明,在3.5V的电位下的Li 2 O 2氧化下形成单次氧((1)Δ(g))。通过与旋转阱的反应检测单态氧,形成通过时间和时间观察到的稳定基团 在目的内置的光谱电化学电池中的Operando EPR光谱中的电压分辨。 根据我们的估计,大约0.5%的进化氧的下限是单线氧。 高反应性单线氧的发生可能是了解在Li-O-2细胞充电期间发生的电解质降解和发生的碳腐蚀反应的长忽略缺失链路。

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