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Strain-induced restructuring of the surface in core@shell nanoalloys

机译:表面的应变重组core@shell nanoalloys

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摘要

A general trend towards surface reconstructions which eliminate open facets in favour of close-packed facets is found for a wide class of A@B nanoalloys with atomically thin shells (B-skin structures), by means of a combination of atomistic and ab initio density-functional calculations. This class comprises Co@Au, Co@Pt, Ni@Pt, Co@Ag, Ni@Ag, Cu@Ag, Cu@Au, Rh@Au, Ni@Rh and Ni@Pd nanoalloys, in which core atoms are smaller than shell atoms. The reconstruction can induce a global restructuring of the nanoparticles, with different parts transforming in a concerted way and causing the emergence of pyritohedral structures from fcc nanoalloys, and of chiral decahedra. The instability of open facets is rationalized in terms of the equilibration of atomic pressures in strained structures. The surface reconstruction can have important effects on nanoalloy properties, as shown for hydrogen adsorption on Ni@Pd.
机译:一般趋势表面重建消除开放方面的吗拥挤不堪的方面是一类广泛发现A@B nanoalloys自动薄壳(B-skin结构)的组合原子论的,从头开始密度泛函计算。Ni@Pt Co@Ag、Ni@Ag Cu@Ag Cu@Au、Rh@Au Ni@Rh和Ni@Pd nanoalloys,核心原子小于壳原子。引起的全球重组纳米颗粒,改变不同部分以协调一致的方式,导致的出现从fcc nanoalloys pyritohedral结构,的手性decahedra。方面是合理的原子压力紧张的平衡结构。重要影响nanoalloy属性,显示Ni@Pd氢吸附。

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