Chemically Tailored Semiconductor Moiré Superlattices of Janus Heterobilayers

Author:

Zhang Wenjin1ORCID,Liu Zheng2ORCID,Nakajo Hiroshi345,Aoki Soma34,Wang Haonan6,Wang Yanlin6,Gao Yanlin7ORCID,Maruyama Mina7ORCID,Kawakami Takuto8ORCID,Makino Yasuyuki1,Kaneda Masahiko1,Chen Tongmin9,Aso Kohei9ORCID,Ogawa Tomoya1,Endo Takahiko1ORCID,Nakanishi Yusuke1ORCID,Watanabe Kenji10ORCID,Taniguchi Takashi11ORCID,Oshima Yoshifumi9ORCID,Yamada‐Takamura Yukiko9,Koshino Mikito8ORCID,Okada Susumu7ORCID,Matsuda Kazunari6ORCID,Kato Toshiaki34ORCID,Miyata Yasumitsu1ORCID

Affiliation:

1. Department of Physics Tokyo Metropolitan University Hachioji 192‐0397 Japan

2. Innovative Functional Materials Research Institute National Institute of Advanced Industrial Science and Technology (AIST) Nagoya 463‐8560 Japan

3. Graduate School of Engineering Tohoku University Sendai 980‐8579 Japan

4. Advanced Institute for Materials Research (AIMR) Tohoku University Sendai 980‐8577 Japan

5. KOKUSAI ELECTRIC CORP. Toyama 939‐2393 Japan

6. Institute of Advanced Energy Kyoto University Kyoto 611‐0011 Japan

7. Department of Physics Graduate School of Pure and Applied Sciences University of Tsukuba Tsukuba 305‐8571 Japan

8. Department of Physics Osaka University Toyonaka Osaka 560‐0043 Japan

9. School of Materials Science Japan Advanced Institute of Science and Technology (JAIST) Ishikawa 923‐1292 Japan

10. Research Center for Electronic and Optical Materials NIMS Tsukuba 305‐0044 Japan

11. Research Center for Materials Nanoarchitectonics NIMS Tsukuba 305‐0044 Japan

Abstract

Janus monolayers of transition metal dichalcogenides (TMDCs) are promising building blocks for moiré superlattices because of their built‐in electric field and clean fabrication process. In particular, Janus TMDC monolayers can be chemically converted from conventional TMDC monolayers by atomic substitution, enabling the direct formation of lattice‐mismatched heterobilayers from TMDC bilayers. However, the moiré superlattices of Janus heterobilayers have not been studied experimentally. Herein, this work reports the fabrication and characterization of semiconductor moiré superlattices in chemically tailored Janus heterobilayers. The MoSSe/MoSe2 (or WSSe/WSe2) Janus heterobilayers are prepared by replacing the top layer Se atoms with S atoms in MoSe2 (or WSe2) bilayer using H2 plasma treatment. Scanning transmission electron microscopy reveals that an average moiré period of about 14 nm formed due to lattice mismatch resulting from the chalcogen substitutions. The cryogenic photoluminescence spectra show sharp, near‐infrared emissions, which are attributed to excitons trapped by moiré potentials based on comparison with theoretical calculations. The Janus‐based heterostructures provide a long‐period moiré system with built‐in potential even for nontwisted heterobilayers, allowing the functionalization of confined and correlated electron systems.

Funder

Japan Society for the Promotion of Science

Core Research for Evolutional Science and Technology

Precursory Research for Embryonic Science and Technology

Publisher

Wiley

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