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各向异性金纳米立方体自组装成大面积二维单层超晶格。

Self-assembly of anisotropy gold nanocubes into large area two-dimensional monolayer superlattices.

作者信息

Li Jinlan, Liu Xuejie, Jin Jing, Yan Nan, Jiang Wei

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, People's Republic of China.

School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei 230026, People's Republic of China.

出版信息

Nanotechnology. 2022 Jun 29;33(38). doi: 10.1088/1361-6528/ac7812.

Abstract

The spontaneous self-assembly of metal nanocrystals into two-dimensional (2D) monolayer superlattices with highly ordered symmetry and configuration paves the way towards the fabrication of functional materials. However, there remains great challenge for anisotropic nanocrystals to self-assembly into high quality superlattice because of the orientation and configuration consistency. Here, a facile yet universal solvent annealing driven 2D interfacial assembly of synthetic dried metal nanocrystals is firstly developed to realize the construction of the non-close-packing 2D monolayer gold nanocube (AuNC) superlattice with tunable interparticle distance and internal configurations (i.e. face-to-face and hexagonally-packed arrangement), which is achieved by precisely controlling molecular weight of polymer ligands tethered on AuNCs and the van der Waals forces between the adjacent AuNCs. In addition, the scale of the generated 2D monolayer AuNC superlattice with highly ordered internal arrangement and orientation can reach up to hundreds of micrometers, thus acquiring significant surface-enhanced Raman scattering performance of the large scale superlattice due to the strong plasma coupling effect. This strategy not only provides a robust route to fabricate nanocrystal superlattice structures but also offers a promising platform for preparing diverse functional materials with potential applications in electronics, photonics, detections, and others.

摘要

金属纳米晶体自发自组装成具有高度有序对称性和构型的二维(2D)单层超晶格,为功能材料的制造铺平了道路。然而,由于取向和构型的一致性,各向异性纳米晶体自组装成高质量超晶格仍然面临巨大挑战。在此,首次开发了一种简便通用的溶剂退火驱动的合成干燥金属纳米晶体二维界面组装方法,以实现具有可调颗粒间距离和内部构型(即面对面和六方堆积排列)的非密堆积二维单层金纳米立方体(AuNC)超晶格的构建,这是通过精确控制连接在AuNCs上的聚合物配体的分子量以及相邻AuNCs之间的范德华力来实现的。此外,所生成的具有高度有序内部排列和取向的二维单层AuNC超晶格的尺寸可达数百微米,因此由于强等离子体耦合效应,该大规模超晶格具有显著的表面增强拉曼散射性能。该策略不仅为制造纳米晶体超晶格结构提供了一条可靠的途径,还为制备在电子、光子学、检测等领域具有潜在应用的各种功能材料提供了一个有前景的平台。

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