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The impact of swift electrons on the segregation of Ni-Au nanoalloys

机译:快速电子对Ni-Au纳米合金偏析的影响

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We report on the electron beam-induced segregation of alloyed Ni-Au clusters into a Ni and Au rich phase at temperatures above the miscibility gap of a binary system. The nanoparticles, with diameters less than 10 nm, are grown fully inert in superfluid helium droplets with a Ni-Au core-shell morphology. Upon heating, the clusters are alloyed and subsequently transformed to a Janus-type morphology under irradiation with swift electrons. The underlying mechanisms are studied experimentally via in situ scanning transmission electron microscopy and theoretically via atomistic simulation techniques under consideration of elastic electron interactions. We find that the segregation kinetics is highly temperature-dependent and attribute this behavior to diffusive relaxation processes. The presented results shed light on radiation induced phenomena using clusters as a model system and suggest new routes for the synthesis of structures in nonequilibrium configurations.
机译:我们报道了在高于二元体系的混溶性间隙的温度下,电子束诱导的合金化Ni-Au团簇分离成富Ni和Au的相。直径小于10 nm的纳米粒子在具有Ni-Au核-壳形态的超流氦液滴中完全惰性生长。加热后,团簇被合金化,随后在快速电子辐照下转变为Janus型形态。通过原位扫描透射电子显微镜对潜在的机理进行了实验研究,并在考虑到弹性电子相互作用的情况下,通过原子模拟技术从理论上研究了这种机理。我们发现偏析动力学高度依赖温度,并且将此行为归因于扩散弛豫过程。提出的结果阐明了使用簇作为模型系统的辐射诱发现象,并提出了在非平衡构型下合成结构的新途径。

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