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Effect of ablated particle flux on MgO nanowire growth by pulsed laser deposition

机译:脉冲激光沉积烧蚀颗粒通量对MgO纳米线生长的影响

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摘要

Oxide nanowire growth using a pulsed laser deposition (PLD) is a promising process since this essentially allows incorporating a rich functionality of various transition metal oxides into nanowires via the heterostructures. Here we investigate the effect of ablated particle flux on magnesium oxide nanowire growth by PLD. When varying the distance between the ablated material and the substrate, the small variation in ablated particle flux generated by a different plume expansion time influences mainly the growth rate while keeping the growth regime. However, varying the laser energy changes not only the growth rate but also the growth regime. Below a critical value of the laser energy the surface morphology tends to show an island growth rather than a nanowire growth. We attribute the existence of such a threshold to the desorption process from the catalyst droplet.
机译:使用脉冲激光沉积(PLD)进行氧化物纳米线生长是一个有前途的过程,因为这实质上允许通过异质结构将各种过渡金属氧化物的丰富功能引入纳米线中。在这里,我们研究了烧蚀颗粒通量对PLD氧化镁纳米线生长的影响。当改变烧蚀材料和基底之间的距离时,由不同的羽流膨胀时间产生的烧蚀颗粒通量的小变化主要影响生长速率,同时保持生长方式。但是,改变激光能量不仅会改变生长速率,而且会改变生长方式。在激光能量的临界值以下,表面形态趋向于显示岛状生长而不是纳米线生长。我们将这种阈值的存在归因于催化剂液滴的解吸过程。

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