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用于锂离子电池的从Li2MnO3中原位提取Li2O的电化学和结构效应。

Electrochemical and structural effects of in situ Li2O extraction from Li2MnO3 for Li-Ion batteries.

作者信息

Jacob Clement, Jian Jie, Su Qing, Verkhoturov Stanislav, Guillemette Renald, Wang Haiyan

机构信息

Department of Electrical and Computer Engineering, Texas A&M University , College Station, Texas 77843, United States.

出版信息

ACS Appl Mater Interfaces. 2015 Feb 4;7(4):2433-8. doi: 10.1021/am5071305. Epub 2015 Jan 21.

Abstract

Li2MnO3 is an attractive cathode material due to its low cost, nontoxicity and potentially high capacity. However, its electrochemical inactivity, its poor electronic conductivity, and uncertainty about its underlying mechanism have limited its development. In this work, an in situ technique for extraction of Li and O during deposition of the thin film cathode is developed to investigate structural and electrochemical effects in a controlled fashion. MnO2 has been observed in samples with severe O and Li deficiency (capacity of 115 mAh g(-1)), while Li2MnO3 cathodes with slight excess of O and Li (capacity of 225 mAh g(-1)) can be synthesized by tuning growth conditions appropriately. Formation of a MnO2 phase, especially in Li and O deficient structures, could be a possible reason for irreversible capacity loss in Li2MnO3 related materials. Further investigation into stoichiometric and microstructure variations enabled by this technique allows rapid investigation of Li2MnO3 as well as other Li-rich composites.

摘要

Li2MnO3因其低成本、无毒和潜在的高容量而成为一种有吸引力的阴极材料。然而,其电化学惰性、较差的电子导电性以及其潜在机制的不确定性限制了它的发展。在这项工作中,开发了一种在薄膜阴极沉积过程中原位提取Li和O的技术,以可控方式研究结构和电化学效应。在O和Li严重缺乏的样品(容量为115 mAh g(-1))中观察到了MnO2,而通过适当调整生长条件,可以合成O和Li略有过量的Li2MnO3阴极(容量为225 mAh g(-1))。MnO2相的形成,特别是在Li和O缺乏的结构中,可能是Li2MnO3相关材料中不可逆容量损失的一个可能原因。通过该技术对化学计量和微观结构变化的进一步研究,可以快速研究Li2MnO3以及其他富锂复合材料。

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