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Mn_2C monolayer: A superior anode material offering good conductivity, high storage capacity and ultrafast ion diffusion for Li-ion and Na-ion batteries

机译:Mn_2C单层:一种优异的阳极材料,可为锂离子和钠离子电池提供良好的导电性,高存储容量和超快的离子扩散能力

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摘要

Developing superior anode materials with offering good conductivity, excellent ion diffusion ability, and high storage capacity is highly desired in current Li-/Na-ion battery (LIB/NIB) technologies. Here, we demonstrate Mn2C monolayer can serve as a such anode material with providing excellent performances on all the crucial judgments. Mn2C monolayer offers stable Li/Na adsorption and relatively low open-circuit voltages, which are desired for anode materials. Mn2C monolayer hosts excellent conductivity during Li/Na adsorption process. Mn2C monolayer shows very high specific capacities for Li (887.6 mA h g(-1)) and Na (443.6 mA h g(-1)). Remarkably, Mn2C monolayer nearly has the lowest Li/Na diffusion barrier among known 2D anode materials, which offers ultrafast ion diffusion. These results suggest Mn2C monolayer is one of the few superior LIB/NIB anode materials indentified so far.
机译:当前的锂/钠离子电池(LIB / NIB)技术迫切需要开发出具有良好导电性,出色的离子扩散能力和高存储容量的优异阳极材料。在这里,我们证明了Mn2C单层可以用作此类阳极材料,并且在所有关键判断上均具有出色的性能。 Mn2C单层提供稳定的Li / Na吸附和相对较低的开路电压,这是阳极材料所需要的。 Mn2C单层在Li / Na吸附过程中具有出色的导电性。 Mn2C单层膜对Li(887.6 mA h g(-1))和Na(443.6 mA h g(-1))具有很高的比容量。值得注意的是,在已知的2D阳极材料中,Mn2C单层几乎具有最低的Li / Na扩散势垒,可提供超快的离子扩散。这些结果表明,Mn2C单层是迄今为止确定的为数不多的几种高级LIB / NIB阳极材料之一。

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