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Structure and transport properties of the BiCuSeO-BiCuSO solid solution

  • David Berardan*
  • , Jing Li
  • , Emilie Amzallag
  • , Sunanda Mitra
  • , Jiehe Sui
  • , Wei Cai
  • , Nita Dragoe
  • *Corresponding author for this work
  • Univ. Paris Sud
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

In this paper, we report on the crystal structure and the electrical and thermal transport properties of the BiCuSe1-xSxO series. From the evolution of the structural parameters with the substitution rate, we can confidently conclude that a complete solid solution exists between the BiCuSeO and BiCuSO end members, without any miscibility gap. However, the decrease of the stability of the materials when increasing the sulfur fraction, with a simultaneous volatilization, makes it difficult to obtain S-rich samples in a single phase. The band gap of the materials linearly increases between 0.8 eV for BiCuSeO and 1.1 eV in BiCuSO, and the covalent character of the Cu-Ch (Ch = chalcogen element, namely S or Se here) bond slightly decreases when increasing the sulfur fraction. The thermal conductivity of the end members is nearly the same, but a significant decrease is observed for the samples belonging to the solid solution, which can be explained by point defect scattering due to atomic mass and radii fluctuations between Se and S. When increasing the sulfur fraction, the electrical resistivity of the samples strongly increases, which could be linked to an evolution of the energy of formation of copper vacancies, which act as acceptor dopants in these materials.

Original languageEnglish
Pages (from-to)1043-1058
Number of pages16
JournalMaterials
Volume8
Issue number3
DOIs
StatePublished - 2015
Externally publishedYes

Keywords

  • Crystal structure
  • Electrical resistivity
  • Electronic band structure
  • Layered chalcogenides
  • Thermal conductivity
  • Thermoelectric materials

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