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通过表面乌尔曼偶联反应实现分子纳米线与外延单层MoS的键合。

Molecular Nanowire Bonding to Epitaxial Single-Layer MoS by an On-Surface Ullmann Coupling Reaction.

作者信息

Rodríguez-Fernández Jonathan, Haastrup Mark J, Schmidt Søren B, Grønborg Signe S, Mammen Mathias H R, Lauritsen Jeppe V

机构信息

Interdisciplinary Nanoscience Center (iNANO), Aarhus University, 8000, Aarhus C, Denmark.

出版信息

Small. 2020 Mar;16(11):e1906892. doi: 10.1002/smll.201906892. Epub 2020 Feb 24.

Abstract

Lateral heterostructures consisting of 2D transition metal dichalcogenides (TMDCs) directly interfaced with molecular networks or nanowires can be used to construct new hybrid materials with interesting electronic and spintronic properties. However, chemical methods for selective and controllable bond formation between 2D materials and organic molecular networks need to be developed. As a demonstration of a self-assembled organic nanowire-TMDC system, a method to link and interconnect epitaxial single-layer MoS flakes with organic molecules is demonstrated. Whereas pristine epitaxial single-layer MoS has no affinity for molecular attachment, it is found that single-layer MoS will selectively bind the organic molecule 2,8-dibromodibenzothiophene (DBDBT) in a surface-assisted Ullmann coupling reaction when the MoS has been activated by pre-exposing it to hydrogen. Atom-resolved scanning tunneling microscopy (STM) imaging is used to analyze the bonding of the nanowires, and thereby it is revealed that selective bonding takes place on a specific S atom at the corner site between the two types of zig-zag edges available in a hexagonal single layer MoS sheet. The method reported here successfully combining synthesis of epitaxial TMDCs and Ullmann coupling reactions on surfaces may open up new synthesis routes for 2D organic-TMDC hybrid materials.

摘要

由二维过渡金属二硫属化物(TMDCs)与分子网络或纳米线直接界面构成的横向异质结构,可用于构建具有有趣电子和自旋电子特性的新型混合材料。然而,需要开发用于二维材料与有机分子网络之间选择性和可控键形成的化学方法。作为自组装有机纳米线 - TMDC系统的一个实例,展示了一种将外延单层MoS薄片与有机分子连接和互连的方法。虽然原始外延单层MoS对分子附着没有亲和力,但发现当MoS通过预先暴露于氢气而被激活时,单层MoS会在表面辅助的乌尔曼偶联反应中选择性地结合有机分子2,8 - 二溴二苯并噻吩(DBDBT)。原子分辨扫描隧道显微镜(STM)成像用于分析纳米线的键合,从而揭示选择性键合发生在六边形单层MoS片中两种之字形边缘之间角位点处的特定S原子上。本文报道的成功结合外延TMDCs合成与表面乌尔曼偶联反应的方法,可能为二维有机 - TMDC混合材料开辟新的合成路线。

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