ジャーナル論文 Exciton Dynamics in Janus WSSe Driven by Structural Asymmetry
Ufuk Erkılıç (author) (この著者で検索)
;
Shengnan Wang (author) (この著者で検索)
;
Yoshiaki Sekine (author) (この著者で検索)
;
Takashi Taniguchi (author) (この著者で検索)
ORCID SAMURAI ;
Kenji Watanabe (author) (この著者で検索)
ORCID SAMURAI ;
Yoshitaka Taniyasu (author) (この著者で検索)
コレクション

引用
Ufuk Erkılıç, Shengnan Wang, Yoshiaki Sekine, Takashi Taniguchi, Kenji Watanabe, Yoshitaka Taniyasu. Exciton Dynamics in Janus WSSe Driven by Structural Asymmetry. Nano Letters. 2025, 25 (32), 12193-12200. https://doi.org/10.1021/acs.nanolett.5c02436

説明:

(abstract)

Artificially engineered Janus transition metal dichalcogenides (TMDCs) feature distinct chalcogen atoms on their top and bottom layers that break mirror symmetry, which is expected to alter the exciton dynamics and exciton–phonon interactions. Here, we present direct experimental evidence of the dipolar nature of excitons in high-quality Janus WSSe monolayers. Spatial imaging of exciton emission reveals that the exciton diffusion length in Janus WSSe is almost twice that of WS2, which is attributed to electron–hole spatial separation induced by the intrinsic out-of-plane electric field. Furthermore, temperature-dependent photoluminescence measurements indicate significantly enhanced excitonic line width broadening of WSSe above 100 K, arising from stronger exciton–phonon scattering via additional optical phonons. These findings highlight the pivotal role of intrinsic structural asymmetry in governing radiative and nonradiative processes in Janus TMDCs and offer insights into their potential for excitonic device applications.

権利情報:

キーワード: Janus transition metal dichalcogenide (TMDC), Exciton diffusion, Exciton-phonon interaction

刊行年月日: 2025-08-13

出版者: American Chemical Society (ACS)

掲載誌:

  • Nano Letters (ISSN: 15306984) vol. 25 issue. 32 p. 12193-12200

研究助成金:

  • Core Research for Evolutional Science and Technology JPMJCR24A5
  • Japan Society for the Promotion of Science 21H05233
  • Japan Society for the Promotion of Science 23H02052

原稿種別: 著者最終稿 (Accepted manuscript)

MDR DOI:

公開URL: https://doi.org/10.1021/acs.nanolett.5c02436

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更新時刻: 2026-07-29 11:26:28 +0900

MDRでの公開時刻: 2026-08-01 08:29:11 +0900

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