4.7 Article

High-Mobility and High-Optical Quality Atomically Thin WS2

期刊

SCIENTIFIC REPORTS
卷 7, 期 -, 页码 -

出版社

NATURE RESEARCH
DOI: 10.1038/s41598-017-14928-2

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资金

  1. EPSRC [EP/K033840/1, EP/K01658X/1, EP/K016792/1, EP/M022250/1, EP/J000396/1, EP/K017160/1, P/K010050/1, EP/G036101/1, EP/M001024/1, EP/M002438/1]
  2. EPSRC-Royal Society Fellowship Engagement [EP/L003481/1]
  3. Royal Society University Research Fellowship by the UK Royal Society
  4. European Commission (H2020-Marie Sklodowska Curie European Fellowship) [660721]
  5. European Commission Marie Curie Individual Fellowships [701704]
  6. Engineering and Physical Sciences Research Council (EPSRC) of the United Kingdom, via the EPSRC Centre for Doctoral Training in Metamaterials [EP/L015331/1]
  7. Royal Society international Exchanges scheme [2016/R1]
  8. Leverhulme trust
  9. EPSRC [EP/L003481/1, EP/K033840/1, EP/K01658X/1, EP/J000396/1, EP/M001024/1, EP/M022250/1, EP/G036101/1, EP/M002438/1, EP/K016792/1, EP/K017160/1] Funding Source: UKRI
  10. Engineering and Physical Sciences Research Council [EP/K01658X/1, EP/K033840/1, EP/K016792/1, 1545105, EP/G036101/1, 1470121, EP/M001024/1, EP/L003481/1, EP/M002438/1, EP/M022250/1, EP/K017160/1, EP/J000396/1] Funding Source: researchfish
  11. Marie Curie Actions (MSCA) [701704, 660721] Funding Source: Marie Curie Actions (MSCA)

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The rise of atomically thin materials has the potential to enable a paradigm shift in modern technologies by introducing multi-functional materials in the semiconductor industry. To date the growth of high quality atomically thin semiconductors (e.g. WS2) is one of the most pressing challenges to unleash the potential of these materials and the growth of mono-or bi-layers with high crystal quality is yet to see its full realization. Here, we show that the novel use of molecular precursors in the controlled synthesis of mono-and bi-layer WS2 leads to superior material quality compared to the widely used direct sulfidization of WO3-based precursors. Record high room temperature charge carrier mobility up to 52 cm(2)/Vs and ultra-sharp photoluminescence linewidth of just 36 meV over submillimeter areas demonstrate that the quality of this material supersedes also that of naturally occurring materials. By exploiting surface diffusion kinetics of W and S species adsorbed onto a substrate, a deterministic layer thickness control has also been achieved promoting the design of scalable synthesis routes.

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