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Assembling Si2BN nanoribbons into a 3D porous structure as a universal anode material for both Li- and Na-ion batteries with high performance

机译:组装Si2BN nanoribbons成三维多孔作为一个通用的阳极材料的结构李,Na-ion与高性能电池

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摘要

The development of anode materials is critical to the success of sodium ion batteries (SIBs). Because of the size difference between Li and Na, the commercial anode material graphite in Li-ion batteries does not work for Na-ion batteries. Thus, it will be ideal if some universal anode materials could work for both Li- and Na-ion batteries with high performance. Inspired by a recent study on the high performance of a 2D-Si2BN sheet as an anode material for Li-ion batteries, we design a three dimensional (3D) porous structure by using the nanoribbons of a Si2BN sheet as building blocks. Based on the state-of-the-artab initiocalculations, we find that the resulting 3D porous Si2BN structure is stable chemically, dynamically and thermally, exhibiting a high specific capacity of 512.42 (341.61 mA h g(-1)), a low voltage of 0.27 V (0.15 V), a small volume expansion of 2.5% (2.7%), and a low migration energy barrier of 0.44 eV (0.19 eV) for Li- (Na-) ion batteries. These intriguing features, together with the light mass and rich abundance of Si, B and N, suggest that the 3D porous Si2BN structure is a promising candidate for the anode material of both Li- and Na-ion batteries.
机译:阳极材料的发展是至关重要的钠离子电池的成功(兄弟姐妹)。因为李和Na之间的大小差异,商业锂阳极材料石墨电池不工作Na-ion电池。因此,这将是理想的如果一些普遍的阳极材料可以为Li -和Na-ion工作电池性能高。最近研究的高性能2 d-si2bn表作为锂离子电池的阳极材料电池,我们设计一个三维(3 d)通过使用nanoribbons的多孔结构Si2BN表作为构建块。state-of-the-artab initiocalculations,我们发现结果三维多孔Si2BN结构稳定的化学性质,动态和热,表现出较高的比容量为512.42马(341.61 h g(1)),低电压为0.27 V(0.15 V), 2.5%的小体积膨胀(2.7%)和低迁移的能量势垒0.44 eV (0.19 eV) Li - (Na -)离子电池。一起,这些有趣的功能光线质量和丰富的大量的硅,B和N,表明3 d是一个多孔Si2BN结构有前途的候选人的阳极材料Li -和Na-ion电池。

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