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Custom-shaped metal nanostructures based on DNA origami silhouettes

机译:不同形状的金属纳米结构基于DNA折纸轮廓

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摘要

The DNA origami technique provides an intriguing possibility to develop customized nanostructures for various bionanotechnological purposes. One target is to create tailored bottom-up-based plasmonic devices and metamaterials based on DNA metallization or controlled attachment of nanoparticles to the DNA designs. In this article, we demonstrate an alternative approach: DNA origami nanoshapes can be utilized in creating accurate, uniform and entirely metallic (e.g. gold, silver and copper) nanostructures on silicon substrates. The technique is based on developing silhouettes of the origamis in the grown silicon dioxide layer, and subsequently using this layer as a mask for further patterning. The proposed method has a high spatial resolution, and the fabrication yields can approach 90%. The approach allows a cost-effective, parallel, large-scale patterning on a chip with fully tailored metallic nanostructures; the DNA origami shape and the applied metal can be specifically chosen for each conceivable implementation.
机译:DNA折纸技术提供了一个有趣的可能开发定制的纳米结构对各种bionanotechnological目的。目标是创建定制bottom-up-based基于DNA的电浆设备和材料金属化或控制附件的纳米粒子在DNA上的设计。篇文章中,我们展示另一种方法:DNA折纸nanoshapes可以利用建立准确、均匀、完全金属(如金、银、铜)纳米结构硅基板。开发的折纸的剪影生长二氧化硅层,随后进一步利用这一层的面具模式。空间分辨率,制造产量可以达到90%。具有成本效益的、并行的、大规模模式在芯片上与完全定制的金属纳米结构;应用金属可以专门为每个选择可能的实现。

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