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Energy landscape and diffusion kinetics of lithiated silicon: A kinetic activation-relaxation technique study

机译:锂化硅的能量景观与扩散动力学:动力学激活 - 松弛技术研究

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摘要

With large specific and volumetric capacity, lithiated silicon is an excellent anode for lithium-ion batteries. Its application is challenged today, however, by the formation of an amorphous a-LixSi phase associated with a large volume change that occurs at relatively low Li concentration and remains only very partly understood at the microscopic level. In this paper, we characterize the full energy landscape associated with the onset of Li insertion in crystalline Si as a first step for understanding the lithiation process. We identify the diffusion mechanisms and migration energies for one to ten Li atoms in a Si crystal as well as the average lifetime of small lithium aggregates, using the kinetic activation-relaxation technique (kART), an off-lattice kinetic Monte-Carlo method with on-the-fly catalog building capabilities coupled to a newly developed force field (ReaxFF) used as potential based on ab initio results.We show that the short lifetimes of the bound states (from meV to ten meV) mean that Li atoms move in the interstitial sublattice with little interactions, explaining how high Li concentration in Si can be reached.
机译:随着大的比和体积容量,锂化硅是用于锂离子电池的阳极优良。其应用的今天,挑战,但是通过与发生在相对较低的Li浓度,仍然只在微观层面非常了解一部分大的体积变化相关的非晶A-LixSi相的形成。在本文中,我们描述与李插入的晶体硅发病为了解锂化过程的第一步相关的充满活力的景观。我们确定了扩散机制和迁移的能量为一体,以在Si晶体以及小锂聚集体的平均寿命10 Li原子,使用动力学活化松弛技术(地图),截止晶格动力学蒙特卡罗法与在即时目录建设连接到用作基于从头results.We显示潜在的新开发的力场(ReaxFF)功能,束缚态(从兆电子伏至十兆电子伏)的寿命短意味着李原子移动间质次晶格与交往较少,在硅解释如何高浓度李可到达。

著录项

  • 来源
    《Physical review, B》 |2017年第13期|共12页
  • 作者单位

    Département de physique and Regroupement québécois sur les matériaux de pointe Université de Montréal C.P. 6128 Succursale Centre-Ville Montréal Québec Canada H3C 3J7;

    Département de physique and Regroupement québécois sur les matériaux de pointe Université de Montréal C.P. 6128 Succursale Centre-Ville Montréal Québec Canada H3C 3J7;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

    Energy; landscape; diffusion;

    机译:能量;景观;扩散;

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