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Radial and axial nanowire heterostructures grown with ZnO nanowires as templates

机译:以ZnO纳米线为模板生长的径向和轴向纳米线异质结构

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The recent research activities on density-control of ZnO nanowire arrays and growth of nanowire heterostructures will be discussed in this contribution. After a brief discussion of the general growth methods of ZnO nanowires, the encountered difficulties that prevent ZnO nanowires from being used as light-emitters were pointed out. One of the difficulties is the growth of homogenous nanowire heterostructures that is usually influenced by the shadowing effect associated with nanowire growth density. Then different strategies that have been adopted to tune the nanowire growth density were summarized and compared. For ZnO nanowire grown with PLD, it was proved that by introducing a wetting layer and adjusting the substrate-target distances the density of nanowire array can be tuned from 10 to 10−2/µm2. Based on the growth density control of nanowire array, a new strategy to grow axial and radial nanowire heterostructures were proposed and demonstrated, which was totally realised with pulsed laser deposition.
机译:在此贡献中,将讨论有关ZnO纳米线阵列的密度控制和纳米线异质结构生长的最新研究活动。在简要讨论了ZnO纳米线的一般生长方法后,指出了阻碍ZnO纳米线用作发光体的困难。困难之一是同质纳米线异质结构的生长,通常受与纳米线生长密度相关的遮蔽效应的影响。然后总结并比较了用于调整纳米线生长密度的不同策略。对于用PLD生长的ZnO纳米线,已证明,通过引入润湿层并调整衬底与目标的距离,可以将纳米线阵列的密度从10调整为10 −2 / µm 2 。在控制纳米线阵列的生长密度的基础上,提出并证明了一种生长轴向和径向纳米线异质结构的新策略,并通过脉冲激光沉积实现了该策略。

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