English

Resistive switching in MoSe$_{2}$/BaTiO$_{3}$ hybrid structures

Applied Physics 2017-10-26 v1

Abstract

Here we study the resistive switching (RS) effect that emerges when ferroelectric BaTiO3_{3} (BTO) and few-layers MoSe2_{2} are combined in one single structure. The C-V loops reveal the ferroelectric nature of both Al/Si/SiOx_{x}/BTO/Au and Al/Si/SiOx_{x}/MoSe2_{2}/BTO/Au structures and the high quality of the SiOx_{x}/MoSe2_{2} interface in the Al/Si/SiOx/MoSe2_{2}/Au structure. Al/Si/SiOx_{x}/MoSe2_{2}/BTO/Au hybrid structures show the electroforming free resistive switching that is explained on the basis of the modulation of the potential distribution at the MoSe2_{2}/BTO interface via ferroelectric polarization flipping. This structure shows promising resistive switching characteristics with switching ratio of \approx{}102^{2} and a stable memory window, which are highly required for memory applications.

Cite

@article{arxiv.1705.04475,
  title  = {Resistive switching in MoSe$_{2}$/BaTiO$_{3}$ hybrid structures},
  author = {J. P. B. Silva and C. Almeida Marques and J. Agostinho Moreira and O. Conde},
  journal= {arXiv preprint arXiv:1705.04475},
  year   = {2017}
}
R2 v1 2026-06-22T19:44:57.232Z