ACS Appl Mater Interfaces. 2018 Oct 24;10(42):36240-36248. doi: 10.1021/acsami.8b11476. Epub 2018 Oct 10.
A fundamental understanding of the thermomechanical properties of electrode materials and Li-ion diffusion kinetics is indispensable for designing high-performance Li-ion batteries (LIBs) with high structural stability and safety. Herein, we performed both molecular dynamics (MD) simulations and density functional theory (DFT) calculations to investigate the thermomechanical properties and Li diffusion kinetics in a two-dimensional (2D) defect-filled graphene-like membrane consisting of 5-, 6-, and 7-membered rings, called psi (ψ)-graphene. Our results reveal that ψ-graphene has a negative linear thermal expansion coefficient, a high specific heat capacity, and high elastic constants that satisfy the Born's criterion for mechanical stability, which can be elucidated as the evidence of strong anharmonicity in ψ-graphene because of the soft out-of-plane bending modes. These characteristics can help prevent the thermal runaway that can occur during overheating and prevent structural damage because of the severe volume expansion of the LIBs. In addition, the Li diffusion coefficient was estimated to be 10 cm/s at 300 K with a low Li migration activation energy (<0.16 eV), which suggests favorable electrode kinetics with fast Li conduction. Our DFT calculations also show that ψ-graphene can possess a fairly good theoretical capacity (339 mA h g) and a lower Li diffusion barrier (<0.21 eV). Our results suggest that the new fundamental insights presented here will help to stimulate further experimental work on ψ-graphene for promising future applications as a superior electrode material for LIBs.
深入理解电极材料的热力学性能和锂离子扩散动力学对于设计具有高结构稳定性和安全性的高性能锂离子电池(LIB)是不可或缺的。在此,我们通过分子动力学(MD)模拟和密度泛函理论(DFT)计算来研究由 5、6 和 7 元环组成的二维(2D)缺陷填充类石墨烯膜(称为 ψ-石墨烯)的热力学性能和 Li 扩散动力学。我们的结果表明,ψ-石墨烯具有负的线性热膨胀系数、高比热容和高弹性常数,满足力学稳定性的 Born 准则,这可以解释为 ψ-石墨烯中由于软面外弯曲模式而存在强烈的非谐性。这些特性有助于防止 LIB 过热时可能发生的热失控和结构损坏,因为 LIB 的体积会剧烈膨胀。此外,在 300 K 下,Li 的扩散系数估计为 10 cm/s,Li 迁移活化能较低(<0.16 eV),这表明电极动力学具有较快的 Li 传导。我们的 DFT 计算还表明,ψ-石墨烯具有相当好的理论容量(339 mA h g)和较低的 Li 扩散势垒(<0.21 eV)。我们的结果表明,这里提出的新的基本见解将有助于激发对 ψ-石墨烯的进一步实验工作,为其作为 LIB 优异电极材料的未来应用提供前景。