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Formation of Nanoscale Composites of Compound Semiconductors Driven by Charge Transfer

  • Weiwei Gao
  • , Roberto Dos Reis
  • , Laura T. Schelhas
  • , Vanessa L. Pool
  • , Michael F. Toney
  • , Kin Man Yu
  • , Wladek Walukiewicz*
  • *Corresponding author for this work

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    Abstract

    Composites are a class of materials that are formed by mixing two or more components. These materials often have new functional properties compared to their constituent materials. Traditionally composites are formed by self-assembly due to structural dissimilarities or by engineering different layers or structures in the material. Here we report the synthesis of a uniform and stoichiometric composite of CdO and SnTe with a novel nanocomposite structure stabilized by the dissimilarity of the electronic band structure of the constituent materials. The composite has interesting electronic properties which range from highly n-type in CdO to semi-insulating in the intermediate composition range to highly p-type in SnTe. This can be explained by the overlap of the conduction and valence band of the constituent compounds. Ultimately, our work identifies a new class of composite semiconductors in which nanoscale self-organization is driven and stabilized by charge transfer between constituent materials.
    Original languageEnglish
    Pages (from-to)5247-5254
    JournalNano Letters
    Volume16
    Issue number8
    DOIs
    Publication statusPublished - 10 Aug 2016

    Research Keywords

    • charge transfer
    • Composite
    • electronic properties
    • self-assembly
    • semiconductor

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