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Low energy alkali ion scattering investigation of Au nanoclusters grown on silicon oxide surfaces

机译:氧化硅表面生长的金纳米团簇的低能碱离子散射研究

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摘要

The atomic and electronic structures of Au nanostructures grown by deposition onto various silicon oxide surfaces were probed with low energy alkali ion scattering. Charge state-resolved time-of-flight spectra of scattered 2 keV ~(39)K~+ ions were collected from Au deposited onto an untreated Si wafer with a native oxide, a thermally grown oxide surface, and atomically-dean Si(111). It is shown that nanoclusters form on both oxides, but not on the clean Si. A quantitative analysis of the ion scattering spectra indicates that the nanoclusters are initially flat, two-dimensional structures that start to develop a second layer at about 0.5 A of deposited Au and then form three-dimensional islands. The neutral fraction of scattered 2 keV ~(39)K~+ ions decreases with deposition indicating changes in the quantum state occupancy with cluster size. The shapes of the clusters differ on the native and thermal oxides, leading to shape-dependent neutralization.
机译:通过低能碱离子散射探测了通过沉积到各种氧化硅表面上而生长的金纳米结构的原子和电子结构。从沉积在未经处理的具有天然氧化物,热生长的氧化物表面和原子化硅的Si(111)的Si晶片上的Au中收集散射的2 keV〜(39)K〜+离子的荷电态分辨的飞行时间谱)。结果表明,在两种氧化物上均会形成纳米团簇,但在干净的Si上不会形成。离子散射光谱的定量分析表明,纳米团簇最初是平坦的二维结构,在沉积的金大约0.5 A时开始形成第二层,然后形成三维岛。散射的2 keV〜(39)K〜+离子的中性分数随沉积而降低,表明量子态占有率随簇大小而变化。簇的形状在天然氧化物和热氧化物上不同,从而导致形状依赖性中和。

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