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Development of atomistic MEAM potentials for the silicon-oxygen-gold ternary system

机译:硅-氧-金三元体系的原子MEAM势的发展

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In this paper, we present a scheme for the development of Si-O, O-O and Au-O modified embedded atom method (MEAM) potential models which can be combined with previously developed Si-Si, Au-Si and Au-Au MEAM potential functions to describe the structural properties of the Au-silica interface as well as several important polymorphs of crystalline silica: alpha- and beta-quartz alpha- and beta-cristobalite and beta-tridymite. Longer-ranged interactions (beyond first nearest neighbour) must be included to stabilize crystalline silica structures. The challenge of finding an appropriate reference structure for this diversely bonded system was solved using the dimer, rather than any single crystalline form of silica, as the reference structure. For the Si-O and O-O potentials, the ground state properties of the reference structures were calculated using DFT calculations and the remaining parameters fitted to the structural properties of alpha-quartz. For the Au-O potential, the parameters were fitted to the bond lengths, the twisted bond angle and the binding energy of a Au atom bound to a SiO4 cluster. The reliability and transferability of this newly developed MEAM potential model for silica have been examined through a series of validations, such as a dynamic stability test using molecular dynamics (MD) simulations and predictions of optimal structural parameters. bulk modulus and binding energies of several important polymorphs of crystalline silica. For the validation of the Au-O MEAM potential, we calculated adsorption energies and bond lengths of a Au adatom on various sites of an alpha-quartz slab using the MEAM potentials and DFT calculations. The agglomeration behaviour and contact angle of a gold island deposited on a silica substrate were examined using MID simulations and found to compare satisfactorily with the experiment. The quality of the models is noteworthy given that our study constitutes a feasibility evaluation of the capability of the MEAM formalism to represent a system which contains the characteristics of both covalent and ionic bonding.
机译:在本文中,我们提出了一种可与先前开发的Si-Si,Au-Si和Au-Au MEAM势结合的Si-O,OO和Au-O改进的嵌入式原子方法(MEAM)势模型的开发方案。用于描述金-二氧化硅界面以及晶体二氧化硅的几种重要多晶型物的结构性质:α-和β-石英,α-和β-方石英和β-鳞石英。必须包括更长范围的相互作用(超出第一个最近的邻居),以稳定结晶二氧化硅结构。使用二聚体(而不是任何单晶形式的二氧化硅)作为参考结构,可以解决为该多样化键合系统找到合适的参考结构的难题。对于Si-O和O-O电位,使用DFT计算来计算参考结构的基态属性,并将其余参数拟合为α-石英的结构属性。对于Au-O电位,将参数拟合为键长,键的扭曲角和与SiO4团簇结合的Au原子的键能。通过一系列验证,例如使用分子动力学(MD)模拟的动态稳定性测试和最佳结构参数的预测,检验了这种新开发的MEAM二氧化硅潜在模型的可靠性和可转移性。几种重要的晶体多晶型物的体积模量和结合能。为了验证Au-O MEAM电位,我们使用MEAM电位和DFT计算方法计算了a-石英板各个部位上Au原子的吸附能和键长。使用MID模拟检查了沉积在二氧化硅基板上的金岛的团聚行为和接触角,发现与实验结果令人满意。鉴于我们的研究构成了对MEAM形式主义表示包含共价键和离子键特征的系统的能力的可行性评估,因此模型的质量值得注意。

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