纳米线
纳米电子学
DNA折纸
纳米技术
纳米结构
材料科学
纳米化学
制作
电子线路
纳米光刻
物理
量子力学
医学
病理
替代医学
作者
David Daniel Ruiz Arce,Shima Jazavandi Ghamsari,Artur Erbe,E. C. Sámano
标识
DOI:10.3390/ijms241713549
摘要
The self-assembly of conducting nanostructures is currently being investigated intensively in order to evaluate the feasibility of creating novel nanoelectronic devices and circuits using such pathways. In particular, methods based on so-called DNA Origami nanostructures have shown great potential in the formation of metallic nanowires. The main challenge of this method is the reproducible generation of very well-connected metallic nanostructures, which may be used as interconnects in future devices. Here, we use a novel design of nanowires with a quasi-circular cross-section as opposed to rectangular or uncontrolled cross-sections in earlier studies. We find indications that the reliability of the fabrication scheme is enhanced and the overall resistance of the wires is comparable to metallic nanostructures generated by electrochemistry or top-down methods. In addition, we observe that some of the nanowires are annealed when passing a current through them, which leads to a clear enhancement for the conductance. We envision that these nanowires provide further steps towards the successful generation of nanoelectronics using self-assembly.
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