Rossi K, Ellaby T, Paz-Borbón L O, Atanasov I, Pavan L, Baletto F
Physics Department, School of Natural and Mathematical Sciences, King's College London, Strand Campus, London, WC2R 2LS, United Kingdom.
J Phys Condens Matter. 2017 Apr 12;29(14):145402. doi: 10.1088/1361-648X/aa5a1d. Epub 2017 Jan 18.
On the basis of ab initio calculations, we present a new parametrisation of the Vervisch-Mottet-Goniakowski (VMG) potential (Vervisch et al 2002 Phys. Rev. B 24 245411) for modelling the oxide-metal interaction. Applying this model to mimic the finite temperature behaviour of large platinum icosahedra deposited on the pristine MgO(1 0 0), we find the nanoparticle undergoes two solid-solid transitions. At 650 K the 'squarisation' of the interface layer, while a full reshaping towards a fcc architecture takes place above 950 K. In between, a quite long-lived intermediate state with a (1 0 0) interface but with an icosahedral cap is observed. Our approach reproduces experimental observations, including wetting behaviour and the lack of surface diffusion.
基于从头算计算,我们提出了一种新的Vervisch-Mottet-Goniakowski(VMG)势参数化方法(Vervisch等人,2002年,《物理评论B》24卷,245411页),用于模拟氧化物-金属相互作用。将该模型应用于模拟沉积在原始MgO(1 0 0)上的大型铂二十面体的有限温度行为,我们发现纳米颗粒经历了两次固-固转变。在650 K时,界面层发生“方形化”,而在950 K以上则会完全重塑为面心立方结构。在此期间,观察到一种相当长寿命的中间状态,其具有(1 0 0)界面但带有二十面体帽。我们的方法再现了实验观察结果,包括润湿性和表面扩散的缺乏。