A hybrid off-lattice kinetic Monte Carlo/molecular dynamics method for amorphous thin film growth

被引:2
|
作者
Ntioudis, Stavros [1 ]
Ewen, James P. [1 ]
Dini, Daniele [1 ]
Turner, C. Heath [2 ]
机构
[1] Imperial Coll London, Dept Mech Engn, London SW7 2BX, England
[2] Univ Alabama, Dept Chem & Biol Engn, Tuscaloosa, AL 35487 USA
基金
英国工程与自然科学研究理事会;
关键词
Off-lattice kinetic Monte Carlo; Molecular dynamics; Multiscale modeling; Thin-film growth; Lubricant additives; Tricresyl phosphate; IRON-PHOSPHATE-GLASSES; VAPOR-PHASE LUBRICATION; SOLID-ELECTROLYTE INTERPHASE; MOLECULAR-DYNAMICS; TRICRESYL PHOSPHATE; SURFACE-CHEMISTRY; CARLO METHOD; FORCE-FIELD; X-RAY; SIMULATION;
D O I
10.1016/j.commatsci.2023.112421
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The ability to understand and model the growth of amorphous thin films on solid surfaces is essential to a wide range of industrial applications, from the deposition of wear-resistant coatings to the production of solar cells. Here, a three-dimensional (3D) hybrid off-lattice kinetic Monte Carlo/molecular dynamics (kMC/MD) algorithm is developed to study the growth of thin amorphous films on solid substrates with atomistic resolution over timescales of tens of seconds. We use this method to study the growth of polyphosphate films from tricresyl phosphate (TCP) molecules on an iron substrate. Molecular adsorption/desorption, bond breaking/formation processes, and diffusion of iron ions through the film are simulated in the kMC stage and the film is relaxed during the MD stage. The kMC/MD method is approximately eleven orders of magnitude faster than equivalent reactive force field (ReaxFF) MD simulations. The simulated film growth rate and topology agree well with experimental results and the chemical structure of the film is consistent with previous molecular dynamics simulations of iron polyphosphates. The newly-developed hybrid kMC/MD methodology can be adapted to yield important insights into thin film growth for several other potential applications.
引用
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页数:16
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