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(Invited) Mechanism of Conduction in the Novel Nano-Solid Composite Electrolytes with High Li-Ion Conductivity

机译:(邀请)具有高锂离子电导率的新型纳米固体复合电解质中的传导机制

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To increase the energy densities of batteries beyond 800Wh/L determined by the currently available cathode and anode materials used in combination with liquid type electrolytes, next generations solid-state electrolytes are investigated. Combined with the Li metal anode, they should enable safe (i.e. free of dendrites), long life (i.e. low to no consumption of Li metal during cycling) and high-performance solid-state batteries reaching energy density above 1000Wh/L.
机译:为了增加超过800Wh / L的电池的能量密度,由当前可用的阴极和与液体型电解质结合使用的阳极材料,研究了下一代固态电解质。 结合Li金属阳极,它们应该能够安全(即,没有树枝状体),长寿命(即循环期间Li金属的消耗量)和高性能固态电池达到1000Wh / L以上的能量密度。

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