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Large-scale Assembly of Periodic Nanostructures with Metastable Square Lattices

机译:具有亚稳方格的周期纳米结构的大规模组装

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摘要

This article reports a simple and scalable spin-coating technique for assembling non-close-packed colloidal crystals with metastable square lattices over wafer-scale areas. The authors observe the alternate formation of hexagonal and square diffraction patterns when the thickness of the colloidal crystals is gradually reduced during spin coating. No prepatterned templates are needed to induce the formation of the resulting metastable crystals with square arrangement. This bottom-up technology also enables the large-scale production of a variety of squarely ordered nanostructures that are consistent with the industry-standard rectilinear coordinate system for simplified addressing and circuit interconnection. Broadband moth-eye antireflection gratings with square lattices have been fabricated by using the shear-aligned colloidal monolayers as structural templates. Optical reflection measurement shows the squarely ordered arrays exhibit lower reflection than the nature-inspired hexagonal arrays with the similar structural parameters.
机译:本文报道了一种简单且可扩展的旋涂技术,该技术用于在晶圆级区域上组装具有亚稳态方格的非密堆积胶体晶体。作者观察到当旋涂过程中胶体晶体的厚度逐渐减小时,六边形和方形衍射图样会交替形成。不需要预先构图的模板即可诱导形成具有正方形排列的亚稳晶体。这种自下而上的技术还可以大规模生产与工业标准直线坐标系一致的各种平方有序的纳米结构,从而简化寻址和电路互连。通过使用剪切排列的胶体单层作为结构模板,已经制造出具有方格的宽带蛾眼抗反射光栅。光学反射测量表明,与具有相似结构参数的自然启发型六边形阵列相比,正方形排列的阵列显示出更低的反射率。

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