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      Low-Dimensional Saturable Absorbers in the Visible Spectral Region

      1 , 1 , 1 , 1
      Advanced Optical Materials
      Wiley

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          Electric Field Effect in Atomically Thin Carbon Films

          We describe monocrystalline graphitic films, which are a few atoms thick but are nonetheless stable under ambient conditions, metallic, and of remarkably high quality. The films are found to be a two-dimensional semimetal with a tiny overlap between valence and conductance bands, and they exhibit a strong ambipolar electric field effect such that electrons and holes in concentrations up to 10 13 per square centimeter and with room-temperature mobilities of ∼10,000 square centimeters per volt-second can be induced by applying gate voltage.
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            Emerging photoluminescence in monolayer MoS2.

            Novel physical phenomena can emerge in low-dimensional nanomaterials. Bulk MoS(2), a prototypical metal dichalcogenide, is an indirect bandgap semiconductor with negligible photoluminescence. When the MoS(2) crystal is thinned to monolayer, however, a strong photoluminescence emerges, indicating an indirect to direct bandgap transition in this d-electron system. This observation shows that quantum confinement in layered d-electron materials like MoS(2) provides new opportunities for engineering the electronic structure of matter at the nanoscale.
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              Topological insulators in Bi2Se3, Bi2Te3 and Sb2Te3 with a single Dirac cone on the surface

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                Author and article information

                Contributors
                Journal
                Advanced Optical Materials
                Advanced Optical Materials
                Wiley
                21951071
                January 2019
                January 2019
                August 30 2018
                : 7
                : 1
                : 1800886
                Affiliations
                [1 ]State Key Laboratory of Crystal Materials and Institute of Crystal Materials; Shandong University; Jinan 250100 China
                Article
                10.1002/adom.201800886
                46a6bbb6-e2f0-41e7-9abb-9e4cebe5cbe1
                © 2018

                http://doi.wiley.com/10.1002/tdm_license_1.1

                http://onlinelibrary.wiley.com/termsAndConditions#vor

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