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Fabrication of metallic nanodisc hexagonal arrays using nanosphere lithography and two-step lift-off

机译:使用纳米球面光刻和两步剥离技术制造金属纳米圆盘六角形阵列

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摘要

Nanosphere lithography (NSL) has been widely used as an inexpensive method to create periodic arrays of metallic nanoparticles or nanodiscs on substrates. However, most nanodisc arrays derived from a NSL template are restricted to hexagonally-ordered triangular arrays because the metal layer is deposited onto the interstices between the nanospheres. Metallic nanodisc arrays with the same arrangement as the original nanosphere array have been rarely reported. Here, we demonstrate a facile, low-cost method to fabricate large-area hexagonal arrays of metallic nanodiscs using an NSL template combined with a two-step lift-off process. We employ a bi-layer of two dissimilar metals to create a re-entrant sidewall profile to undercut the sacrificial layer and facilitate the final lift-off of the metallic nanodiscs. The quality of the nanodisc pattern and the array periodicity is determined using statistical image analysis and compared to the original nanosphere array in terms of size distribution, surface smoothness, and array pitch. This nanodisc array is used as an etch mask to create a vertically-aligned Si nanowire array. This combined approach is a scalable and inexpensive fabrication method for creating relatively large-area, ordered arrays of various nanostructures.
机译:纳米球光刻(NSL)已被广泛用作廉价的方法,以在基板上创建金属纳米颗粒或纳米圆盘的周期性阵列。但是,由于金属层沉积在纳米球之间的间隙中,所以大多数从NSL模板派生的纳米光盘阵列仅限于六角形三角形阵列。与原始纳米球阵列具有相同排列的金属纳米盘阵列很少报道。在这里,我们演示了一种简便,低成本的方法,该方法使用NSL模板结合两步剥离工艺来制造金属纳米圆盘的大面积六角形阵列。我们使用两种不同金属的双层来创建凹角侧壁轮廓,以侧切牺牲层并促进金属纳米圆盘的最终剥离。使用统计图像分析确定纳米光盘图案的质量和阵列周期性,并在尺寸分布,表面光滑度和阵列间距方面与原始纳米球阵列进行比较。该纳米盘阵列用作蚀刻掩模,以创建垂直对齐的Si纳米线阵列。这种组合方法是一种可扩展且廉价的制造方法,用于创建相对较大面积的各种纳米结构的有序阵列。

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