Tuning the atomic and electronic structures of mirror twin boundaries in molecular beam epitaxy grown MoSe2 monolayers via rhenium doping

Author:

Yu ZhoubinORCID,Xia Yipu,Komsa Hannu-PekkaORCID,Zhang Junqiu,Xie MaohaiORCID,Jin ChuanhongORCID

Abstract

Abstract Interplay between defects like mirror twin boundaries (MTBs) and dopants may provide additional opportunities for furthering the research on two-dimensional monolayer (ML) transition metal dichalcogenides. In this work, we successfully dope rhenium (Re) into molecular beam epitaxy grown ML MoSe2 and confirm the formation of a new type of MTBs, named 4|4E-M (M represents metal, Mo/Re) according to the configuration. Data from statistic atomic resolution scanning transmission electron microscopy also reveals a preferable MTB enrichment of Re dopants, rather than intra-domain. In conjunction with density functional theory calculation results, we propose the possible routes for Re doping induced formation of 4|4E-M MTBs. Electronic structures of Re doped MTBs in ML MoSe2 are also predicted theoretically and then preliminarily tested by scanning tunneling microscopy and spectroscopy.

Funder

Zhejiang Provincial Natural Science Foundation

Basic and Applied Basic Research Major Programme of Guangdong Province, China

Research Grant Council of Hong Kong Special Administrative Region, China

National Natural Science Foundation of China

National Key R&D Program of China

Jihua Laboratory

Publisher

IOP Publishing

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,General Chemistry

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