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DNA nanotubes self-assembled from triple-crossover tiles as templates for conductive nanowires

机译:DNA纳米管由三重交叉的瓷砖自组装成导电纳米线的模板

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DNA-based nanotechnology is currently being developed as a general assembly method for nanopatterned materials that may find use in electronics, sensors, medicine, and many other fields. Here we present results on the construction and characterization of DNA nanotubes, a self-assembling superstructure composed of DNA tiles. Triple-crossover tiles modified with thiol-containing double-stranded DNA stems projected out of the tile plane were used as the basic building blocks. Triple-crossover nanotubes display a constant diameter of ≈25 nm and have been observed with lengths up to 20 μm. We present high-resolution images of the constructs, experimental evidence of their tube-like nature as well as data on metallization of the nanotubes to form nanowires, and electrical conductivity measurements through the nanowires. DNA nanotubes represent a potential breakthrough in the self-assembly of nanometer-scale circuits for electronics layout because they can be targeted to connect at specific locations on larger-scale structures and can subsequently be metallized to form nanometer-scale wires. The dimensions of these nanotubes are also perfectly suited for applications involving interconnection of molecular-scale devices with macroscale components fabricated by conventional photolithographic methods.
机译:目前正在开发基于DNA的纳米技术,作为纳米图案材料的通用组装方法,该材料可用于电子,传感器,医学和许多其他领域。在这里,我们介绍DNA纳米管的结构和表征的结果,DNA纳米管是由DNA瓷砖组成的自组装上层建筑。使用从砖瓦平面伸出的含硫醇双链DNA茎修饰的三交叉砖作为基本构件。三重交叉纳米管显示恒定的直径≈25nm,并且观察到的长度最大为20μm。我们提供了该结构的高分辨率图像,其管状性质的实验证据以及有关形成纳米线的纳米管金属化的数据,以及通过纳米线进行的电导率测量。 DNA纳米管代表了用于电子设备布局的纳米级电路自组装方面的潜在突破,因为它们可以被定位为连接在较大规模结构上的特定位置,然后可以被金属化以形成纳米级导线。这些纳米管的尺寸也非常适用于涉及分子尺度器件与通过常规光刻方法制造的宏观组件互连的应用。

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