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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A first-principles study of NbSe2 monolayer as anode materials for rechargeable lithium-ion and sodium-ion batteries
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A first-principles study of NbSe2 monolayer as anode materials for rechargeable lithium-ion and sodium-ion batteries

机译:Nbse2单层作为可再充电锂离子和钠离子电池作为阳极材料的第一原理研究

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摘要

There is a great desire to search for suitable anodes with good performance for rechargeable metal-ion batteries, which require not only large capacity but excellent rate performance and cycling stability. In this work, the electronic properties of NbSe2 monolayer were explored based on first-principles calculations. We performed a full geometry optimization for Li/Na-adsorbed structures and obtained favorable adsorption sites. The metallic character for both pristine NbSe2 monolayer and the Li/Na-adsorbed NbSe2 ensures good electrical conduction. In addition, we find that NbSe2 monolayer is more inclined to adsorb Li and Na atoms with smaller adsorption energy under Li/Na-rich condition, indicating the superiority of NbSe2 monolayer as an electrode. Then, we obtained a relatively low diffusion barrier of approximately 0.205 eV for Li and, in particular, a significantly small diffusion barrier of about 0.086 eV for Na, which ensures excellent cycling performance of NbSe2 monolayer as a battery electrode. Most importantly, the Li and Na adsorption density in NbSe2 monolayer can be as high as Li2NbSe2 and Na4NbSe2, corresponding to theoretical specific capacities of 203 and 312 mAh.g(-1), respectively. And the average electrode potentials were predicted to be 0.51 V for the chemical stoichiometry of Li2NbSe2 and 0.22 V for Na4NbSe2. In view of these excellent properties, our work predicts that NbSe2 monolayer can be a promising anode material for the development of low-cost high-performance Li-and Na-ion batteries.
机译:有一个伟大的愿望,寻找具有可充电的金属离子电池,不仅需要大容量,但优良率性能和循环稳定性能好合适的阳极。在这项工作中,NbSe2单层的电子特性基于第一性原理计算进行了探讨。我们进行了Li /钠吸附结构和获得良好的吸附位全几何优化。两个原始NbSe2单层和锂/钠吸附NbSe2金属字符确保了良好的电传导。此外,我们发现,NbSe2单层更倾向于具有较小的吸附能锂/钠浓条件下吸附Li和Na原子,表明NbSe2单层的优越性作为电极。然后,我们获得了约0.205伏特锂的相对低的扩散势垒和,特别地,约0.086 2eV的显著小扩散阻挡的Na,这确保NbSe2单层的优异的循环性能的电池电极。最重要的是,在NbSe2单层的Li和Na吸附密度可以高达Li2NbSe2和Na4NbSe2,分别对应于203和312 mAh.g(-1)的理论比容量。平均电极电势被预测为Li2NbSe2的化学化学计量0.51 V和0.22 V代表Na4NbSe2。鉴于这些优异的性能,我们的工作预测,NbSe2单层可以低成本高性能的锂和钠离子电池发展的一个有前途的正极材料。

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