Enhancing optoelectronic properties of SiC-grown graphene by a surface layer of colloidal quantum dots

نویسندگان

  • Oleg Makarovsky
  • Laurence Eaves
  • Ahsan Uddin
  • Yihao Zhu
  • Amol Singh
  • Xiaoxian Song
  • Yating Zhang
  • Haiting Zhang
  • Naoki Matsumoto
  • Masaaki Mineharu
  • Masahiro Matsunaga
  • Shuigang Xu
  • Zefei Wu
  • Huanhuan Lu
  • Seonyeong Kim
  • Somyeong Shin
  • Maciej Zwierzycki
چکیده

We report a simultaneous increase of carrier concentration, mobility and photoresponsivity when SiC-grown graphene is decorated with a surface layer of colloidal PbS quantum dots, which act as electron donors. The charge on the ionised dots is spatially correlated with defect charges on the SiC-graphene interface, thus enhancing both electron carrier density and mobility. This chargecorrelation model is supported by Monte Carlo simulations of electron transport and used to explain the unexpected 3-fold increase of mobility with increasing electron density. The enhanced carrier concentration and mobility give rise to Shubnikov-de Haas oscillations in the magnetoresistance, which provide an estimate of the electron cyclotron mass in graphene at high densities and Fermi energies up to 1.2 × 1013 cm−2 and 400 meV, respectively. LETTER 2017 Original content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI. RECEIVED

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تاریخ انتشار 2017