4.8 Article

Franckeite as a naturally occurring van der Waals heterostructure

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NATURE COMMUNICATIONS
卷 8, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/ncomms14409

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资金

  1. BBVA Foundation through the fellowship 'I Convocatoria de Ayudas Fundacion BBVA a Investigadores, Innovadores y Creadores Culturales' ('Semiconductores ultradelgados: hacia la optpelectronica flexible')
  2. MINECO (Ramon y Cajal program) [RYC-2014-01406]
  3. MICINN [MAT2014-58399-JIN]
  4. European Commission under the Graphene Flagship [CNECTICT-604391]
  5. European Research Council (MINT) [ERC-StG-307609]
  6. MINECO of Spain [CTQ2014-60541-P]
  7. AMAROUT II fellowship program [291803]
  8. MICCINN/MINECO (Spain) [MAT2014-57915-R, BES-2012-057346, FIS2011-23488, MAT2013-49893-EXP, MAT2014-59315-R, FIS2013-47328-C02-1]
  9. Comunidad de Madrid (Spain) [S2013/MIT-3007]
  10. Dutch organization for Fundamental Research on Matter (FOM)
  11. Ministry of Education, Culture, and Science (OCW)
  12. ALBA Synchrotron [BL24-CIRCE]
  13. ALBA [2015091399]
  14. Ministry of Education of Brazil [BEX 9476/13-0]
  15. European Union structural funds
  16. Comunidad de Madrid MAD2D-CM programme [P2013/MIT-3007, P2013/MIT-2850]
  17. Generalitat Valenciana [PROMETEO/2012/011]

向作者/读者索取更多资源

The fabrication of van der Waals heterostructures, artificial materials assembled by individual stacking of 2D layers, is among the most promising directions in 2D materials research. Until now, the most widespread approach to stack 2D layers relies on deterministic placement methods, which are cumbersome and tend to suffer from poor control over the lattice orientations and the presence of unwanted interlayer adsorbates. Here, we present a different approach to fabricate ultrathin heterostructures by exfoliation of bulk franckeite which is a naturally occurring and air stable van der Waals heterostructure (composed of alternating SnS2-like and PbS-like layers stacked on top of each other). Presenting both an attractive narrow bandgap (<0.7eV) and p-type doping, we find that the material can be exfoliated both mechanically and chemically down to few-layer thicknesses. We present extensive theoretical and experimental characterizations of the material's electronic properties and crystal structure, and explore applications for near-infrared photodetectors.

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