石墨烯
异质结
范德瓦尔斯力
化学
单层
堆积
共价键
双功能
剥脱关节
纳米技术
表面改性
分子
制作
材料科学
光电子学
有机化学
催化作用
病理
物理化学
医学
替代医学
作者
Manuel Vázquez Sulleiro,Ayşegül Develioğlu,Ramiro Quirós‐Ovies,Lucía Martín-Pérez,Natalia Martín Sabanés,Maria de Lourdes Gonzalez-Juarez,I. Jénnifer Gómez,Mariano Vera‐Hidalgo,Víctor Sebastián,Jesús Santamarı́a,Enrique Burzurı́,Emilio M. Pérez
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2022-04-25
卷期号:14 (6): 695-700
被引量:38
标识
DOI:10.1038/s41557-022-00924-1
摘要
The most widespread method for the synthesis of 2D-2D heterostructures is the direct growth of one material on top of the other. Alternatively, flakes of different materials can be manually stacked on top of each other. Both methods typically involve stacking 2D layers through van der Waals forces-such that these materials are often referred to as van der Waals heterostructures-and are stacked one crystal or one device at a time. Here we describe the covalent grafting of 2H-MoS2 flakes onto graphene monolayers embedded in field-effect transistors. A bifunctional molecule featuring a maleimide and a diazonium functional group was used, known to connect to sulfide- and carbon-based materials, respectively. MoS2 flakes were exfoliated, functionalized by reaction with the maleimide moieties and then anchored to graphene by the diazonium groups. This approach enabled the simultaneous functionalization of several devices. The electronic properties of the resulting heterostructure are shown to be dominated by the MoS2-graphene interface.
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