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Direct Band Gap in Multilayer Transition Metal Dichalcogenide Nanoscrolls with Enhanced Photoluminescence

Lin, Ci (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia;Univ Hong Kong, China
Cai, Liang (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia
Fu, Jui-Han (author)
Univ Tokyo, Japan
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Sattar, Shahid (author)
Linnéuniversitetet,Institutionen för fysik och elektroteknik (IFE),Avancerade material
Wang, Qingxiao (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia
Wan, Yi (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia
Tseng, Chien-Chih (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia;Univ Tokyo, Japan
Yang, Chih-Wen (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia
Aljarb, Areej (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia;King Abdulaziz Univ, Saudi Arabia
Jiang, Ke (author)
Shenzhen University, China
Huang, Kuo-Wei (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia
Li, Lain-Jong (author)
Univ Hong Kong, China
Canali, Carlo M. (author)
Linnéuniversitetet,Institutionen för fysik och elektroteknik (IFE),Avancerade material
Shi, Yumeng (author)
Shenzhen Univ, China
Tung, Vincent (author)
King Abdullah Univ Sci & Technol KAUST, Saudi Arabia
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 (creator_code:org_t)
2022-07-20
2022
English.
In: ACS Materials Letters. - : American Chemical Society (ACS). - 2639-4979. ; 4:8, s. 1547-1555
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • A direct band gap that solely exists in monolayer semiconducting transition metal dichalcogenides (TMDs) endows strong photoluminescence (PL) features, whereas multilayer TMD structures exhibit quenched PL due to the direct-to-indirect band gap transition. We demonstrate multi-layer TMD (such as MoS2 and WS2) nanoscrolls with a preserved direct band gap fabricated by an effective and facile method of solvent-driven self-assembly. The resultant multi-layer nanoscrolls, exhibiting up to 11 times higher PL intensity than the remanent monolayer, are carefully characterized using PL spectroscopy. Significantly enlarged interlayer distances and modulated interlayer coupling in the fabricated nanostructures are unveiled by cross-sectional scanning transmission electron microscopy, atomic force microscopy, and Raman spectroscopy. The preservation of direct band gap features is further evidenced by density functional theory calculations using the simplified bilayer model with an experimentally obtained 15 & ANGS; interlayer distance. The modulation of the PL intensity as an indicator of the band gap crossover in the TMD nanoscrolls is demonstrated by removing the acetone molecules trapped inside the interlayer space. The general applicability of the method presents an opportunity for large-scale fabrication of a plethora of multilayer TMD nanoscrolls with direct band gaps.

Subject headings

NATURVETENSKAP  -- Fysik -- Den kondenserade materiens fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Condensed Matter Physics (hsv//eng)
NATURVETENSKAP  -- Fysik -- Atom- och molekylfysik och optik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Atom and Molecular Physics and Optics (hsv//eng)

Keyword

Condensed Matter Physics
Kondenserade materians fysik

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