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Creating metamaterial building blocks with directed photochemical metallization of silver onto DNA origami templates

机译:使用银在DNA折纸模板上的指向光化学金属化的超大建筑块

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摘要

DNA origami can be used to create a variety of complex and geometrically unique nanostructures that can be further modified to produce building blocks for applications such as in optical metamaterials. We describe a method for creating metal-coated nanostructures using DNA origami templates and a photochemical metallization technique. Triangular DNA origami forms were fabricated and coated with a thin metal layer by photochemical silver reduction while in solution or supported on a surface. The DNA origami template serves as a localized photosensitizer to facilitate reduction of silver ions directly from solution onto the DNA surface. The metallizing process is shown to result in a conformal metal coating, which grows in height to a self-limiting value with increasing photoreduction steps. Although this coating process results in a slight decrease in the triangle dimensions, the overall template shape is retained. Notably, this coating method exhibits characteristics of self-limiting and defect-filling growth, which results in a metal nanostructure that maps the shape of the original DNA template with a continuous and uniform metal layer and stops growing once all available DNA sites are exhausted.
机译:DNA折纸可用于产生各种复杂和几何独特的纳米结构,可以进一步修改以生产用于诸如在光学超材料中的应用的构建块。我们描述了一种使用DNA折纸模板和光化学金属化技术产生金属涂覆纳米结构的方法。制造三角DNA折纸形式并通过光化学银层涂覆薄金属层,同时在溶液中或在表面上负载。 DNA折纸模板用作局部光敏剂,以便于将银离子的溶液直接从溶液中减少到DNA表面上。显示金属化方法导致保形金属涂层,其在高度与增加的光电步骤中生长到自限制值。尽管该涂层过程导致三角形尺寸的略微减小,但是保持整体模板形状。值得注意的是,该涂布方法表现出自限制和缺陷填充生长的特征,这导致金属纳米结构,其用连续且均匀的金属层映射原始DNA模板的形状,并且一旦所有可用的DNA位点都耗尽,就会终止生长。

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