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      A Study of the Influence of Lithium Salt Anions on Oxygen Reduction Reactions in Li-Air Batteries

      , , , ,
      Journal of The Electrochemical Society
      The Electrochemical Society

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          An improved high-performance lithium-air battery.

          Although dominating the consumer electronics markets as the power source of choice for popular portable devices, the common lithium battery is not yet suited for use in sustainable electrified road transport. The development of advanced, higher-energy lithium batteries is essential in the rapid establishment of the electric car market. Owing to its exceptionally high energy potentiality, the lithium-air battery is a very appealing candidate for fulfilling this role. However, the performance of such batteries has been limited to only a few charge-discharge cycles with low rate capability. Here, by choosing a suitable stable electrolyte and appropriate cell design, we demonstrate a lithium-air battery capable of operating over many cycles with capacity and rate values as high as 5,000 mAh g(carbon)(-1) and 3 A g(carbon)(-1), respectively. For this battery we estimate an energy density value that is much higher than those offered by the currently available lithium-ion battery technology.
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            Influence of Nonaqueous Solvents on the Electrochemistry of Oxygen in the Rechargeable Lithium−Air Battery

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              Elucidating the Mechanism of Oxygen Reduction for Lithium-Air Battery Applications

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                Author and article information

                Journal
                Journal of The Electrochemical Society
                J. Electrochem. Soc.
                The Electrochemical Society
                0013-4651
                1945-7111
                February 27 2015
                2015
                March 19 2015
                2015
                : 162
                : 6
                : A1055-A1066
                Article
                10.1149/2.0841506jes
                432ad9c4-a79c-403c-9508-2149a3745066
                © 2015
                History

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