Non-aqueous Metal–Oxygen Batteries: Past, Present, and Future

作者: Maxwell D. Radin , Donald J. Siegel

DOI: 10.1007/978-3-319-15458-9_18

关键词:

摘要: Metal–oxygen batteries have attracted significant attention due to the high theoretical capacities of some chemistries. This chapter summarizes history metal-oxygen and reviews current status room-temperature, non-aqueous systems. Emphasis is given operating mechanisms, unsolved challenges, new approaches associated with Li–O2 system.

参考文章(174)
Aleksander S. Popel, Theory of oxygen transport to tissue. Critical Reviews in Biomedical Engineering. ,vol. 17, pp. 257- 321 ,(1989)
Eda Yilmaz, Chihiro Yogi, Keisuke Yamanaka, Toshiaki Ohta, Hye Ryung Byon, Promoting Formation of Noncrystalline Li2O2 in the Li–O2 Battery with RuO2 Nanoparticles Nano Letters. ,vol. 13, pp. 4679- 4684 ,(2013) , 10.1021/NL4020952
Nobuyuki Imanishi, Alan C Luntz, Peter Bruce, None, The lithium air battery : fundamentals Springer. ,(2014)
Supramaniam Srinivasan, Fuel Cells: From Fundamentals to Applications ,(2010)
Jorge E. A. Toni, Guy D. McDonald, William E. Elliott, LITHIUM-MOIST AIR BATTERY Defense Technical Information Center. ,(1966) , 10.21236/AD0642248
David Linden, Handbook Of Batteries ,(2001)
Bruce W. Downing, Metal–Air Technology Electrochemical Technologies for Energy Storage and Conversion, Volume 1&2. pp. 239- 277 ,(2012) , 10.1002/9783527639496.CH6
Nils-Gösta Vannerberg, Peroxides, Superoxides, and Ozonides of the Metals of Groups Ia, IIa, and IIb Progress in Inorganic Chemistry. pp. 125- 197 ,(2007) , 10.1002/9780470166055.CH3