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Quasi-aligned gold nanodots on a nanorippled silica surface: Experimental and atomistic simulation investigations

机译:纳米波纹二氧化硅表面上准对准的金纳米点:实验和原子模拟研究

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摘要

Quasi-aligned gold nanodots with a periodicity of ~ 40nm have been synthesized on a silica substrate by oblique deposition of gold on fast argon atom-beam-created nanoripples of wavelength 40 nm and subsequent annealing. The size distribution of these aligned nanodots resulting from oblique deposition at 85° of 0.5nm Au film perpendicular to ripples is narrower than the similar deposition on a flat surface. The deposition and annealing process was simulated with a three-dimensional kinetic lattice Monte Carlo technique in order to understand the formation of aligned nanodots. The atomistic simulation and the experimental results suggest that there is an optimal thickness which can result in nanodots aligned along the ripples in the case of depositions perpendicular to the ripples. The nanodots formed after annealing of the films deposited parallel to ripples or on flat surface lack alignment.
机译:通过在快速氩原子束产生的波长为40 nm的纳米波纹上倾斜沉积金并随后进行退火,已在二氧化硅基板上合成了周期约为40nm的准对准金纳米点。这些倾斜的纳米点的尺寸分布是由于在垂直于波纹的0.5°Au膜在85°倾斜沉积而形成的,比在平坦表面上的相似沉积要窄。为了理解对准的纳米点的形成,使用三维动力学晶格蒙特卡洛技术模拟了沉积和退火过程。原子模拟和实验结果表明,在垂直于波纹的沉积情况下,存在最佳厚度,可以使纳米点沿着波纹排列。平行于波纹或在平坦表面上沉积的薄膜退火后形成的纳米点缺乏取向。

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