CNR-IPCF, Istituto per i Processi Chimico-Fisici, I-56124 Pisa, Italy.
Nano Lett. 2011 Apr 13;11(4):1766-9. doi: 10.1021/nl200322s. Epub 2011 Mar 2.
Chemical ordering in face-centered-cubic-like PdPt nanoparticles consisting of 38-201 atoms is studied via density-functional calculations combined with a symmetry orbit approach. It is found that for larger particles in the Pd-rich regime, Pt atoms can segregate at the center of the nanoparticle (111) surface facets, in contrast with extended systems in which Pd is known to segregate at the surface of alloy planar surfaces. In a range of compositions around 1:1, a novel multishell chemical ordering pattern was favored, in which each shell is a patchwork of islands of atoms of the two elements, but the order of the patchwork is reversed in the alternating shells. These findings are rationalized in terms of coordination-dependent bond-energy variations in the metal-metal interactions, and their implications in terms of properties and applications of nanoscale alloy particles are discussed.
通过密度泛函计算结合对称轨道方法,研究了由 38-201 个原子组成的面心立方类似 PdPt 纳米粒子中的化学有序。研究发现,对于富 Pd 区较大的粒子,Pt 原子可以在纳米粒子(111)表面面心的中心处偏析,而在扩展系统中,已知 Pd 在合金平面表面偏析。在大约 1:1 的一系列组成范围内,有利于一种新颖的多壳层化学有序模式,其中每个壳层是两种元素原子的岛的拼贴画,但拼贴画的顺序在交替壳层中是相反的。这些发现可以根据金属-金属相互作用中依赖于配位的键能变化来合理化,并讨论了它们对纳米尺度合金粒子的性能和应用的影响。