Anomalous doping effect in black phosphorene using first-principles calculations

  • Yu, Weiyang
  • Zhu, Zhili
  • Niu, Chun Yao
  • Li, Chong
  • Cho, Jun Hyung
  • 외 1명
Citations

WEB OF SCIENCE

117
Citations

SCOPUS

124

초록

Using first-principles density functional theory calculations, we investigate the geometries, electronic structures, and thermodynamic stabilities of substitutionally doped phosphorene sheets with group III, IV, V, and VI elements. We find that the electronic properties of phosphorene are drastically modified by the number of valence electrons in dopant atoms. The dopants with an even number of valence electrons enable the doped phosphorenes to have a metallic feature, while the dopants with an odd number of valence electrons retain a semiconducting feature. This even-odd oscillating behavior is attributed to the peculiar bonding characteristics of phosphorene and the strong hybridization of sp orbitals between dopants and phosphorene. Furthermore, the calculated formation energies of various substitutional dopants in phosphorene show that such doped systems can be thermodynamically stable. These results propose an intriguing route to tune the transport properties of electronic and photoelectronic devices based on phosphorene.

키워드

FIELD-EFFECT TRANSISTORSGRAPHENE
제목
Anomalous doping effect in black phosphorene using first-principles calculations
저자
Yu, WeiyangZhu, ZhiliNiu, Chun YaoLi, ChongCho, Jun HyungJia, Yu
DOI
10.1039/c5cp01732g
발행일
2015-05
유형
Article
저널명
Physical Chemistry Chemical Physics
17
25
페이지
16351 ~ 16358

파일 다운로드