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Achilles' Heel of Lithium-Air Batteries: Lithium Carbonate

机译:锂气球的脚跟:碳酸锂

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The lithium-air battery (LAB) is envisaged as an ultimate energy storage device because of its highest theoretical specific energy among all known batteries. However, parasitic reactions bring about vexing issues on the efficiency and longevity of the LAB, among which the formation and decomposition of lithium carbonate Li2CO3 is of paramount importance. The discovery of Li2CO3 as the main discharge product in carbonate-based electrolytes once brought researchers to the end of the idyll in the early 2010 s. In the past few years, tremendous efforts have been made to understand the formation and decomposition mechanisms of Li2CO3, as well as to conceive novel chemical/material strategies to suppress the Li2CO3 formation and to facilitate the Li2CO3 decomposition. Moreover, the study on Li2CO3 in LABs is opening up a new research field in energy technology. Considering the rapid development and innumerous emerging issues, it is timely to recapitulate the current understandings, define the ambiguities and the scientific gaps, and discuss topics of high priority for future research, which is the aim of this Minireview.
机译:由于其所有已知电池之间的最高理论特性能量,锂 - 空气电池(实验室)被设想为终极能量存储装置。然而,寄生反应为实验室的效率和寿命带来了烦恼问题,其中碳酸锂Li2Co3的形成和分解是至关重要的。作为碳酸盐基电解质中的主要放电产品的发现曾经向2010年初达到田园诗的末尾的研究人员。在过去的几年里,已经了解巨大的努力,了解Li2Co3的形成和分解机制,以及构思新的化学/材料策略抑制Li2CO3的形成,并促进Li2CO3分解。此外,实验室中Li2Co3的研究正在开辟能源技术的新研究领域。考虑到快速发展和无价的新兴问题,它是及时认调当前的谅解,定义歧义和科学差距,讨论未来研究的高优先级的主题,这是这个Minireview的目标。

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