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- W3033993543 abstract "Rechargeable Lithium-Sulfur (Li-S) batteries are capable of electrochemical-energy storage devices due to 3 to 5 times higher specific energy density than that of Li-ion batteries based on intercalation reactions, cheaper cost, and eco-friendliness. For the multiple applications, these Li-S batteries may be used as next-generation energy storage devices. However, the expansion and application of these batteries are hindered by decay and kinetically slow caused by the polysulfide shuttle and electrode or electrolyte interface concern. The Li-S batteries are already achieved much attraction due to high specific energy density storage devices in the coming decades. However, the low sulfur loading in the cathode for Li-S battery greatly offsets its advantage in high energy density and limits the practical applications of such battery concepts. Recently, remarkable progress has been achieved in improving battery performance by modifying the electrodes by the integration of various functional carbon materials. Flexible energy storage devices are also becoming increasingly important for future applications but are limited by the lack of suitable lightweight electrode materials with robust electrochemical performance under cyclic mechanical strain. These issues could meet to a high extent developing schemes of novel sulfur electrodes along with novel nanostructures." @default.
- W3033993543 created "2020-06-12" @default.
- W3033993543 creator A5055191773 @default.
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- W3033993543 date "2020-04-13" @default.
- W3033993543 modified "2023-10-03" @default.
- W3033993543 title "Li‐S Batteries" @default.
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- W3033993543 doi "https://doi.org/10.1002/9781119714774.ch18" @default.
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