English

Hafnium carbide formation in oxygen deficient hafnium oxide thin films

Materials Science 2016-06-28 v1

Abstract

On highly oxygen deficient thin films of hafnium oxide (hafnia, HfO2x_{2-x}) contaminated with adsorbates of carbon oxides, the formation of hafnium carbide (HfCx_x) at the surface during vacuum annealing at temperatures as low as 600 {\deg}C is reported. Using X-ray photoelectron spectroscopy the evolution of the HfCx_x surface layer related to a transformation from insulating into metallic state is monitored in situ. In contrast, for fully stoichiometric HfO2_2 thin films prepared and measured under identical conditions, the formation of HfCx_x was not detectable suggesting that the enhanced adsorption of carbon oxides on oxygen deficient films provides a carbon source for the carbide formation. This shows that a high concentration of oxygen vacancies in carbon contaminated hafnia lowers considerably the formation energy of hafnium carbide. Thus, the presence of a sufficient amount of residual carbon in resistive random access memory devices might lead to a similar carbide formation within the conducting filaments due to Joule heating.

Keywords

Cite

@article{arxiv.1606.08227,
  title  = {Hafnium carbide formation in oxygen deficient hafnium oxide thin films},
  author = {C. Rodenbücher and E. Hildebrandt and K. Szot and S. U. Sharath and J. Kurian and P. Komissinskiy and U. Breuer and R. Waser and L. Alff},
  journal= {arXiv preprint arXiv:1606.08227},
  year   = {2016}
}