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- W2897711884 endingPage "94" @default.
- W2897711884 startingPage "65" @default.
- W2897711884 abstract "Batteries based on the Li–O2 conversion electrochemistry exhibit large theoretical specific energies that, if practically achieved, could revolutionize electrochemical energy storage systems and drastically outweigh the storage of current Li-ion battery technologies. However, numerous technical hurdles need to be overcome to realize high-performance Li–O2 systems with high specific/volumetric energy densities, high power outputs, good cycling efficiencies, and the long cycling lifetimes required to create commercially viable devices. In addition to the challenges related to developing new cathode/anode materials, improving round-trip efficiencies (reducing overpotentials), and understanding/controlling the fundamental interfacial processes, the electrolyte material represents one of the most crucial areas of research and development. Due to the highly reactive nature of the Li–O2 conversion chemistry, and the intermediates that form during discharge–charge processes, electrolyte decomposition via unwanted parasitic reactions contributes overwhelmingly to loss of cycle life and cell failure. Furthermore, many studies in recent years have demonstrated how different electrolyte components (salts, solvents, additives) mediate the discharge–charge processes of Li–O2 cells. This contributes to varied capacities, product morphologies, and cell rechargeabilities as a result of the properties of different electrolytes. Herein, this chapter aims to discuss the progress in Li–O2 battery electrolyte research and the many challenges associated with this expanding subject area." @default.
- W2897711884 created "2018-10-26" @default.
- W2897711884 creator A5010912848 @default.
- W2897711884 creator A5023604472 @default.
- W2897711884 creator A5027363723 @default.
- W2897711884 creator A5029120265 @default.
- W2897711884 date "2018-10-12" @default.
- W2897711884 modified "2023-09-26" @default.
- W2897711884 title "Electrolytes for Li-O<sub>2</sub>Batteries" @default.
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