4.8 Article

Research on Effective Oxygen Window Influencing the Capacity of Li-O2 Batteries

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 8, 期 16, 页码 10375-10382

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b02586

关键词

lithium-oxygen battery; oxygen electrode; cell capacity; effective area; oxygen diffusion

资金

  1. National Natural Science Foundation of China [21403107, 21373111]
  2. National Basic Research Program of China [2014CB932302, 2014CB932303]
  3. Natural Science Foundation of Jiangsu Provience of China [BK20140055]
  4. Specialized Research Fund for the Doctoral Program of Higher Education of China [20120091120022]
  5. PAPD of Jiangsu Higher Education Institutions
  6. Project on Union of Industry Study-Research of Jiangsu Province [BY2015069-01]

向作者/读者索取更多资源

Li-O-2 batteries have attracted extensive attention recently due to the extremely huge specific energy. Similar to research mode of Li-ion batteries, nowadays specific capacity based on the mass of cathode material is widely adopted to evaluate the electrochemical performance of Li-O-2 batteries. However, the prerequisite of linear correlation between the delivered capacity and active mass is easily neglected. In this paper, we demonstrate the rationality of specific capacity adopted in Li-ion batteries with classic. LiCoO2 cathode by confirming the linear correlation between cell capacity and LiCoO2 mass. Delivered capacities of Li-O-2 batteries with different cathode masses are simultaneously measured and nonlinear correlation is obtained. The discharge and charge products are identified by Xray diffraction and in situ gas chromatography-mass spectrometry analysis to ensure reaction mechanism. Discharge capacities of Li-O-2 batteries with Various areas of oxygen window are further studied, which shows that cell capacity increases linearly with the area of oxygen window. Scanning electron microscopy is employed to observe the discharged electrode and shows that Li2O2 deposition during discharge mainly occurs in the electrode area exposure to the Oxygen, which is consequently defined as effective area for accommodating Li2O2. Moreover, a plausible route for formation of effective area in the oxygen electrode is proposed. These results provide evidence that effective area is an equally important factor determining cell, capacity.

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