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高度导电的薄均匀金涂覆 DNA 纳米线。

Highly Conductive Thin Uniform Gold-Coated DNA Nanowires.

机构信息

Institute of Chemistry and The Center for Nanoscience and Nanotechnology, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.

Department of Biochemistry, George S. Wise Faculty of Life Sciences and Nanotechnology Center, Tel Aviv University, Ramat Aviv, 69978, Israel.

出版信息

Adv Mater. 2018 Jun;30(26):e1800433. doi: 10.1002/adma.201800433. Epub 2018 May 4.

DOI:10.1002/adma.201800433
PMID:29726045
Abstract

Over the past decades, DNA, the carrier of genetic information, has been used by researchers as a structural template material. Watson-Crick base pairing enables the formation of complex 2D and 3D structures from DNA through self-assembly. Various methods have been developed to functionalize these structures for numerous utilities. Metallization of DNA has attracted much attention as a means of forming conductive nanostructures. Nevertheless, most of the metallized DNA wires reported so far suffer from irregularity and lack of end-to-end electrical connectivity. An effective technique for formation of thin gold-coated DNA wires that overcomes these drawbacks is developed and presented here. A conductive atomic force microscopy setup, which is suitable for measuring tens to thousands of nanometer long molecules and wires, is used to characterize these DNA-based nanowires. The wires reported here are the narrowest gold-coated DNA wires that display long-range conductivity. The measurements presented show that the conductivity is limited by defects, and that thicker gold coating reduces the number of defects and increases the conductive length. This preparation method enables the formation of molecular wires with dimensions and uniformity that are much more suitable for DNA-based molecular electronics.

摘要

在过去的几十年中,DNA(遗传信息的载体)一直被研究人员用作结构模板材料。沃森-克里克碱基配对使 DNA 能够通过自组装形成复杂的二维和三维结构。已经开发了各种方法来对这些结构进行功能化,以实现多种用途。金属化 DNA 作为形成导电纳米结构的一种手段引起了广泛关注。然而,迄今为止报道的大多数金属化 DNA 线都存在不规则性和缺乏端到端的电连通性。这里开发并提出了一种克服这些缺点的形成薄金涂覆 DNA 线的有效技术。使用适合测量数纳米到数千纳米长的分子和线的导电原子力显微镜装置来表征这些基于 DNA 的纳米线。这里报道的这些线是显示长程导电性的最窄的金涂覆 DNA 线。所进行的测量表明,电导率受到缺陷的限制,而较厚的金涂层减少了缺陷的数量并增加了导电长度。这种制备方法能够形成尺寸和均匀性更适合基于 DNA 的分子电子学的分子线。

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