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Density functional studies of coinage metal nanoparticles: scalability of their properties to bulk

机译:造币金属纳米粒子的密度泛函研究:其性质对体积的可扩展性

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Density functional plane-wave calculations have been carried out for series of Cu n ,Ag n and Au n particles containing up to 146 (Cu, Ag) and 225 (Au) atoms. Full geometry optimization has been performed for all particles starting from the structures created by cuts from the bulk. In line with previous studies, calculated average nearest-neighbour distances and cohesive energies of the particles linearly depend on such size-derived parameters as the average coordination number of metal atoms and the inverse of the mean particle radius, respectively. Rather accurate linear extrapolation of the observables under scrutiny to the bulk values has been achieved. However, we show that the scalability for particles made of various elements of the same d10s1 electron configuration differs, e.g. for bond lengths in Au n species it is noticeably less perfect than that for Cu n and Ag n ones. Implications of encountered structural peculiarities of the nanoparticles for their reactivity are outlined.
机译:已经对包含最多146(Cu,Ag)和225(Au)原子的一系列Cu n ,Ag n 和Au n 粒子进行了密度泛函平面波计算。已针对所有粒子执行了完整的几何优化,这些粒子从通过体块切割创建的结构开始。与以前的研究相一致,粒子的平均平均近邻距离和内聚能线性地取决于尺寸推导的参数,例如金属原子的平均配位数和平均粒子半径的倒数。在对体积值进行仔细检查的基础上,已经实现了对观测物的精确线性外推。但是,我们表明,由具有相同d10 s1 电子构型的各种元素制成的颗粒的可扩展性不同,例如,对于Au n 物种的键长,它的明显不如Cu n 和Ag n 物种的键长。概述了所遇到的纳米颗粒的结构特性对其反应性的影响。

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