Institute of Technical Electrochemistry, Technische Universität München, Lichtenbergstr. 4, D-85748, Garching, Germany.
Phys Chem Chem Phys. 2013 Jul 14;15(26):11025-37. doi: 10.1039/c3cp51056e. Epub 2013 May 28.
The decomposition of lithium peroxide during the charging process of lithium-air batteries is investigated. A novel preparation method for electrodes in the discharged state, i.e., prefilled with Li2O2 using polyethylene oxide as a binder, is presented. The composition and reactivity of Li2O2-prefilled electrodes are examined by thermal analysis coupled with on-line mass spectrometry. Voltage profiles and gas evolution during the charging process of Li2O2-prefilled electrodes in battery cells are correlated with the thermal decomposition process of Li2O2 and its impact on other electrode compounds. It is found that both thermal Li2O2 decomposition and the electrochemical decomposition of Li2O2 during charging enhance the oxidation of the electrolyte, the binder, and/or carbon, which is suggested to be due to the formation of "nascent" oxygen during Li2O2 decomposition into O2 and Li2O (thermally) or into O2 and lithium ions (electrochemically).
研究了锂空气电池在充电过程中过氧化锂的分解。提出了一种用于在放电状态下制备电极的新方法,即使用聚氧化乙烯作为粘结剂预先填充 Li2O2。通过与在线质谱联用的热分析来检查填充 Li2O2 的电极的组成和反应性。将 Li2O2 填充电极在电池中充电过程中的电压曲线和气体释放与 Li2O2 的热分解过程及其对其他电极化合物的影响相关联。结果发现,Li2O2 的热分解和充电过程中 Li2O2 的电化学分解均增强了电解质、粘结剂和/或碳的氧化,这被认为是由于 Li2O2 分解为 O2 和 Li2O(热分解)或分解为 O2 和锂离子(电化学分解)过程中形成了“原始”氧。