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用于锂、钠和镁离子电池的黑磷锂化、钠化和镁化的第一性原理比较研究。

A comparative first-principles study of the lithiation, sodiation, and magnesiation of black phosphorus for Li-, Na-, and Mg-ion batteries.

作者信息

Hembram K P S S, Jung Hyun, Yeo Byung Chul, Pai Sung Jin, Lee Heon Ju, Lee Kwang-Ryeol, Han Sang Soo

机构信息

Computational Science Research Center, Korea Institute of Science and Technology (KIST), Hwarangno 14-gil 5, Seongbuk-gu, Seoul, 136-791, Republic of Korea.

出版信息

Phys Chem Chem Phys. 2016 Aug 3;18(31):21391-7. doi: 10.1039/c6cp02049f.

Abstract

Using first-principles calculations, we describe and compare atomistic lithiation, sodiation, and magnesiation processes in black phosphorous with a layered structure similar to graphite for Li-, Na-, and Mg-ion batteries because graphite is not considered to be an electrode material for Na- and Mg-ion batteries. The three processes are similar in that an intercalation mechanism occurs at low Li/Na/Mg concentrations, and then further insertion of Li/Na/Mg leads to a change from the intercalation mechanism to an alloying process. Li and Mg show a columnar intercalation mechanism and prefer to locate in different phosphorene layers, while Na shows a planar intercalation mechanism and preferentially localizes in the same layer. In addition, we compare the mechanical properties of black phosphorous during lithiation, sodiation, and magnesiation. Interestingly, lithiation and sodiation at high concentrations (Li2P and Na2P) lead to the softening of black phosphorous, whereas magnesiation shows a hardening phenomenon. In addition, the diffusion of Li/Na/Mg in black phosphorus during the intercalation process is an easy process along one-dimensional channels in black phosphorus with marginal energy barriers. The diffusion of Li has a lower energy barrier in black phosphorus than in graphite.

摘要

通过第一性原理计算,我们描述并比较了黑磷中锂化、钠化和镁化的原子过程,黑磷具有类似于石墨的层状结构,适用于锂、钠和镁离子电池,因为石墨不被认为是钠和镁离子电池的电极材料。这三个过程的相似之处在于,在低锂/钠/镁浓度下发生嵌入机制,然后锂/钠/镁的进一步插入导致从嵌入机制转变为合金化过程。锂和镁表现出柱状嵌入机制,且倾向于位于不同的磷烯层中,而钠表现出平面嵌入机制,并优先定位在同一层中。此外,我们比较了锂化、钠化和镁化过程中黑磷的力学性能。有趣的是,高浓度(Li2P和Na2P)下的锂化和钠化会导致黑磷软化,而镁化则表现出硬化现象。此外,在嵌入过程中,锂/钠/镁在黑磷中的扩散是一个沿着黑磷中具有边际能垒的一维通道的容易过程。锂在黑磷中的扩散能垒比在石墨中的低。

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