School of Biological and Chemical Sciences, Materials Research Institute, and Institute of Bioengineering, Queen Mary University of London, Mile End Road, London E1 4NS, UK.
Sci Rep. 2017 Mar 28;7:45591. doi: 10.1038/srep45591.
We present a facile strategy of general applicability for the assembly of individual nanoscale moieties in array configurations with single-molecule control. Combining the programming ability of DNA as a scaffolding material with a one-step lithographic process, we demonstrate the patterning of single quantum dots (QDs) at predefined locations on silicon and transparent glass surfaces: as proof of concept, clusters of either one, two, or three QDs were assembled in highly uniform arrays with a 60 nm interdot spacing within each cluster. Notably, the platform developed is reusable after a simple cleaning process and can be designed to exhibit different geometrical arrangements.
我们提出了一种通用的简便策略,可通过单分子控制将单个纳米级结构在阵列中组装。我们将 DNA 的编程能力与一步光刻工艺相结合,在硅和透明玻璃表面的预定位置上对单个量子点(QD)进行图案化:作为概念验证,我们以高度均匀的方式将单个、两个或三个 QD 组装成簇,每个簇中的 QD 间距为 60nm。值得注意的是,该平台在经过简单的清洁处理后可重复使用,并且可以设计为展示不同的几何排列。