论文标题
铝功能化硅:碱金属离子电池的潜在阳极材料
Aluminum functionalized silicene: a potential anode material for alkali metal ion batteries
论文作者
论文摘要
我们已经调查了使用铝功能化的硅三层(ABC-SI $ _4 $ al $ _2 $)作为碱金属离子电池(AMIBS)的阳极材料的可能性。首先,我们使用Ab-Initio Molecular Dynamics模拟研究了ABC-SI $ _4 $ al $ _2 $的热力学稳定性,表明该材料保持稳定高达600 k。然后,我们探索了碱金属原子(Li,Na,na,k)在ABC-SI $ _4 $ _4 $ al $ _ $ _ $ _ $ _2 $ _的属性中的属性。此外,我们使用轻度的弹性带方法计算了这些原子沿高对称路径的扩散特性。结果表明,扩散屏障与石墨中的扩散屏障,尤其是对于Na(0.32 eV)和K(0.22 eV),这使这些离子可以在材料表面易于迁移。 Our studies also revealed that the full loaded Li$_4$Si$_4$Al$_2$, Na$_2$Si$_4$Al$_2$, and K$_2$Si$_4$Al$_2$ systems provide low open-circuit voltage, ranging from 0.14 to 0.49 V, and large theoretical capacity of 645 mAh/g for Li- and 322 MAH/G用于NA-和K-ION电池,与其他阳极材料(例如Graphite,Tio $ _2 $和基于硅的系统)接近的值。这些结果表明,铝功能化的几层硅是Amibs阳极的有前途的材料,特别是对于Na-和K-Ion电池。
We have investigated the possibility of using aluminum functionalized silicene trilayers (ABC-Si$_4$Al$_2$) as an anode material for alkali metal ion batteries (AMIBs). First, we studied the thermodynamic stability of ABC-Si$_4$Al$_2$ using ab-initio molecular dynamics simulations, showing that this material remains stable up to 600 K. Then, we explored the properties of alkali metal atoms (Li, Na, K) adsorption in ABC-Si$_4$Al$_2$, finding several available sites with high adsorption energies. Moreover, we computed the diffusion properties of those atoms along high-symmetry paths using the nudged elastic band method. The results indicated diffusion barriers as low as those in graphite, especially for Na (0.32 eV) and K (0.22 eV), which allows those ions to migrate easily on the material's surface. Our studies also revealed that the full loaded Li$_4$Si$_4$Al$_2$, Na$_2$Si$_4$Al$_2$, and K$_2$Si$_4$Al$_2$ systems provide low open-circuit voltage, ranging from 0.14 to 0.49 V, and large theoretical capacity of 645 mAh/g for Li- and 322 mAh/g for Na- and K-ion batteries, values that are close to the ones in other anode materials, such as graphite, TiO$_2$, and silicene-based systems. Those results indicate that aluminum functionalized few-layer silicene is a promising material for AMIBs anodes, particularly for Na- and K-ion batteries.