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Laser-Induced Hydrothermal Growth of Heterogeneous Metal-Oxide Nanowire on Flexible Substrate by Laser Absorption Layer Design

机译:激光吸收层设计在柔性基板上激光诱导的异质金属氧化物纳米线水热生长

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摘要

Recent development of laser-induced hydrothermal growth enabled direct digital growth of ZnO nanowire array at an arbitrary position even on 3D structures by creating a localized temperature field through a photothermal reaction in liquid environment. However, its spatial size was generally limited by the size of the focused laser spot and the thermal diffusion, and the target material has been limited to ZnO. In this paper, we demonstrated a next generation laser-induced hydrothermal growth method to grow nanowire on a selected area that is even smaller than the laser focus size by designing laser absorption layer. The control of laser-induced temperature field was achieved through adjusting the physical properties of the substrate (dimension and thermal conductivity), and it enabled a successful synthesis of smaller nanowire array without changing any complex optics. Through precise localized temperature control with laser, this approach could be extended to various nanowires including ZnO and TiO2 nanowires even on heat sensitive polymer substrate.
机译:激光诱导的水热生长的最新发展通过在液体环境中通过光热反应产生局部温度场,使得ZnO纳米线阵列即使在3D结构上也可以直接数字生长。但是,其空间大小通常受聚焦激光点的大小和热扩散的限制,并且目标材料仅限于ZnO。在本文中,我们演示了通过设计激光吸收层在选定区域上生长纳米线的下一代激光诱导水热生长方法,该区域甚至小于激光焦点尺寸。激光诱导温度场的控制是通过调整基板的物理特性(尺寸和导热率)来实现的,它可以成功地合成较小的纳米线阵列,而无需更改任何复杂的光学器件。通过使用激光进行精确的局部温度控制,即使在热敏聚合物基板上,该方法也可以扩展到包括ZnO和TiO2纳米线在内的各种纳米线。

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