Grasselli Federico
COSMO-Laboratory of Computational Science and Modelling, IMX, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.
J Chem Phys. 2022 Apr 7;156(13):134705. doi: 10.1063/5.0087382.
The effects of the finite size of the simulation box in equilibrium molecular dynamics simulations are investigated for prototypical superionic conductors of different types, namely, the fluorite-structure materials PbF, CaF, and UO (type II), and the α phase of AgI (type I). Largely validated empirical force-fields are employed to run ns-long simulations and extract general trends for several properties, at increasing size and in a wide temperature range. This work shows that, for the considered type-II superionic conductors, the diffusivity dramatically depends on the system size and that the superionic regime is shifted to larger temperatures in smaller cells. Furthermore, only simulations of several hundred atoms are able to capture the experimentally observed, characteristic change in the activation energy of the diffusion process, occurring at the order-disorder transition to the superionic regime. Finite-size effects on ion diffusion are instead much weaker in α-AgI. The thermal conductivity is found generally smaller for smaller cells, where the temperature-independent (Allen-Feldman) regime is also reached at significantly lower temperatures. The finite-size effects on the thermal motion of the non-mobile ions composing the solid matrix follow the simple law that holds for solids.
针对不同类型的典型超离子导体,即在萤石结构材料PbF、CaF和UO(II型)以及AgI的α相(I型)中,研究了平衡分子动力学模拟中模拟盒有限尺寸的影响。采用经过大量验证的经验力场进行纳秒级长时间模拟,并在不断增大尺寸以及宽温度范围内提取多种性质的一般趋势。这项工作表明,对于所考虑的II型超离子导体,扩散率显著依赖于系统尺寸,并且在较小的模拟盒中超离子态转变至更高温度。此外,只有几百个原子的模拟才能捕捉到在向超离子态的有序-无序转变时实验观察到的扩散过程活化能的特征变化。相反,在α-AgI中有限尺寸对离子扩散的影响要弱得多。对于较小的模拟盒,热导率通常较小,在这些模拟盒中与温度无关的(艾伦-费尔德曼)区域也在显著更低的温度下达到。有限尺寸对构成固体基质的非移动离子热运动的影响遵循适用于固体的简单规律。