首页> 外文会议>American Chemical Society National Meeting Exhibition >CARBON NANOSHEET FRAMEWORKS DERIVED FROM PEAT MOSS AS HIGH CAPACITY SODIUM ION BATTERY ANODES WITH SUPERB CYCLING AND RATE CAPABILITY
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CARBON NANOSHEET FRAMEWORKS DERIVED FROM PEAT MOSS AS HIGH CAPACITY SODIUM ION BATTERY ANODES WITH SUPERB CYCLING AND RATE CAPABILITY

机译:碳纳米片框架从泥炭苔作为高容量钠离子电池阳极,具有精湛的循环和速率能力

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Advanced portable and automotive electrical energy storage (EES) system are primarily based on lithium ion battery (LIB) technologies. However there is increasing concern about the use of lithium due to its cost disadvantage and overall global scarcity. Sodium is an attractive alternative to lithium due to its markedly lower cost and much wider global abundance. Sodium ion batteries (NIBs) are therefore attracting increasing scientific attention, particularly with regard to large-scale stationary applications where their lower gravimetric energy density is less of an issue.
机译:先进的便携式和汽车电能存储(EES)系统主要基于锂离子电池(LIB)技术。然而,由于其成本劣势和整体全球稀缺,锂的使用越来越担心。由于其明显较低的成本和更广泛的全球丰富,钠是锂的有吸引力的替代品。因此,钠离子电池(尖端)因此吸引了越来越多的科学关注,特别是关于其较低重量能量密度的大规模固定应用。

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