Fabrication of Au nanostructures by pulsed laser deposition in air

R. Nikov, A. Dikovska, N. Nedyalkov, P. Atanasov
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引用次数: 7

Abstract

Results on fabrication of Au nanostructures by laser ablation in open air are presented. The ablation of the Au target is performed in air environment by nanosecond laser pulses delivered by Nd:YAG laser system operated at λ = 355 nm. Due to the high density of the ambient atmosphere, the intensive collisions of the plume spices result in formation of nanoparticles and aggregates by condensation close to the target. The produced nanoagregates are deposited on a quartz substrate where grow in a specific nanostructure. Diagnostics of the laser-generated plasma for the laser fluences used in this study is performed. Study based on change of ambient conditions shows that the increase of the air pressure from 10 Torr to atmospheric one leads to transition from thin film to porous structures. It is found that the surface morphology of the structures produced by pulsed laser deposition (PLD) in open air strongly depends on the substrate-target distance. The electrical properties of the obtained structures are studied by measurement of their electrical resistance. It is found that the conductivity of the structures strongly depends on their morphology. The fabricated structures have potential for application in the field of electronics and sensors.
脉冲激光沉积制备金纳米结构的研究
介绍了露天激光烧蚀法制备金纳米结构的研究结果。利用λ = 355 nm的Nd:YAG激光系统输出的纳秒激光脉冲,在空气环境中对Au靶进行了烧蚀。由于周围大气的高密度,羽状物的强烈碰撞导致纳米粒子和聚集体在目标附近凝结形成。生产的纳米聚集体沉积在石英衬底上,在那里生长成特定的纳米结构。对激光产生的等离子体进行诊断,用于本研究中的激光影响。基于环境条件变化的研究表明,空气压力从10torr增加到大气压力,导致薄膜结构向多孔结构转变。研究发现,露天脉冲激光沉积(PLD)结构的表面形貌与基材与靶材的距离密切相关。通过测量所得结构的电阻来研究其电学性能。研究发现,结构的电导率很大程度上取决于它们的形态。该结构在电子和传感器领域具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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