Higher nitrides of hafnium, zirconium, and titanium synthesized by dual ion beam deposition
- 1 June 1986
- journal article
- Published by Springer Nature in Journal of Materials Research
- Vol. 1 (3) , 442-451
- https://doi.org/10.1557/jmr.1986.0442
Abstract
We report the preparation and properties of higher nitrides of Hf, Zr, and Ti synthesized by dual ion beam deposition. For Hf and Zr, evidence is given for the existence of a metastable nitride phase with composition of approximately Hf3 N4 and Zr3 N4. These two materials are insulating and transparent straw colored, in contrast to the well-known mononitrides, which are shiny, gold colored, and highly conducting. For Ti-N we do not reach as high an N content and do not obtain an insulating, transparent phase. The higher nitrides of Hf and Zr are synthesized under energetic nitrogen ion bombardment (200 e V) of a growing film and do not form in the presence of molecular nitrogen gas alone. Several variations of the ion beam deposition process are used to obtain a wide range of film composition and to study the transition from the mononitride to the higher nitride phase. Transmission electron diffraction shows the structure of Hf3N4 and Zr3N4 to be very close to the Bl (NaCl) structure of the mononitrides, but with a slight rhombohedral distortion. Additional evidence from noble gas incorporation (Ne, Ar, and Xe) supports a model of these higher nitrides as containing a large number of vacancies on the metal atom sites.Keywords
This publication has 5 references indexed in Scilit:
- Synthesis of compound thin films by dual ion beam deposition. I. Experimental approachJournal of Applied Physics, 1985
- Structure of reactively magnetron sputtered Hf-N filmsApplied Physics Letters, 1984
- Quantitative ion beam process for the deposition of compound thin filmsApplied Physics Letters, 1983
- TiN formed by evaporation as a diffusion barrier between Al and SiJournal of Vacuum Science and Technology, 1982
- The effect of vacancies on the electronic structure of NboJournal of Physics and Chemistry of Solids, 1982