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First-Principles Calculations of P-B Co-Doped Cluster N-Type Diamond

  • Huaqing Lan
  • , Sheng Yang
  • , Wen Yang
  • , Maoyun Di
  • , Hongxing Wang
  • , Yuming Tian
  • , Kaiyue Wang
  • Taiyuan University of Science and Technology

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

To achieve n-type doping in diamond, extensive investigations employing first principles have been conducted on various models of phosphorus doping and boron–phosphorus co-doping. The primary focus of this study is to comprehensively analyze the formation energy, band structure, density of states, and ionization energy of these structures. It is observed that within a diamond structure solely composed of phosphorus atoms, the formation energy of an individual carbon atom is excessively high. However, the P-V complex substitutes 2 of the 216 carbon atoms, leading to the transformation of diamond from an insulator to a p-type semiconductor. Upon examining the P-B co-doped structure, it is revealed that the doped impurities exhibit a tendency to form more stable cluster configurations. As the separation between the individually doped atoms and the cluster impurity structure increases, the overall stability of the structure diminishes, consequently resulting in an elevation of the ionization energy. Examination of the electronic density of states indicates that the contribution of B atoms to the impurity level is negligible in the case of P-B doping.

Original languageEnglish
Article number467
JournalCrystals
Volume14
Issue number5
DOIs
StatePublished - May 2024

Keywords

  • cluster formation model
  • donor impurity
  • n-type diamond
  • phosphorus

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