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DNA 引导的金纳米线的导电组装。

DNA-Mold Templated Assembly of Conductive Gold Nanowires.

机构信息

Molecular Biophysics Group, Peter Debye Institute for Soft Matter Physics , Universität Leipzig , 04103 Leipzig , Germany.

出版信息

Nano Lett. 2018 Mar 14;18(3):2116-2123. doi: 10.1021/acs.nanolett.8b00344. Epub 2018 Mar 1.

Abstract

We introduce a new concept for the solution-based fabrication of conductive gold nanowires using DNA templates. To this end, we employ DNA nanomolds, inside which electroless gold deposition is initiated by site-specific attached seeds. Using programmable interfaces, individual molds self-assemble into micrometer-long mold superstructures. During subsequent internal gold deposition, the mold walls constrain the metal growth, such that highly homogeneous nanowires with 20-30 nm diameters are obtained. Wire contacting using electron-beam lithography and electrical conductance characterization at temperatures between 4.2 K and room temperature demonstrate that metallic conducting wires were produced, although for part of the wires, the conductance is limited by boundaries between gold grains. Using different mold designs, our synthesis scheme will, in the future, allow the fabrication of complex metal structures with programmable shapes.

摘要

我们提出了一种使用 DNA 模板制备基于溶液的导电金纳米线的新概念。为此,我们采用 DNA 纳米模具,在模具内通过特定位置的附着种子引发无电电镀金沉积。通过可编程界面,单个模具可以自组装成微米长的模具超结构。在随后的内部金沉积过程中,模具壁限制了金属的生长,从而获得直径为 20-30nm 的高度均匀纳米线。使用电子束光刻进行的线材接触和在 4.2K 至室温之间的电导率特性表明,尽管对于部分线材来说,电导率受到金颗粒之间的边界限制,但已经生成了金属导电线材。通过不同的模具设计,我们的合成方案将来可以制造具有可编程形状的复杂金属结构。

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