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Epitaxial aluminum-doped zinc oxide thin films on sapphire. 2: Defect equilibria and electrical properties

Journal Article · · Journal of the American Ceramic Society
; ;  [1]
  1. Univ. of California, Santa Barbara, CA (United States). Dept. of Materials

The electrical transport properties of epitaxial ZnO films grown on different orientations of sapphire substrates have been measured as a function of partial pressure of oxygen. After equilibration, the carrier concentration is found to change from a p{sub O{sub 2}}{sup {minus}1/4} to a p{sub O{sub 2}}{sup {minus}3/8} dependence with increasing oxygen partial pressure. The partial pressure dependence is shown to be consistent with zinc vacancies being the rate-controlling diffusive species. In addition, the carrier concentration in ZnO films grown on A-, C-, and M-plane sapphire are the same but that of R-plane sapphire is systematically lower. Electron Hall mobility measurements as a function of carrier concentration for all the substrate orientations exhibit a transition from ``single-crystal`` behavior at high carrier concentrations to ``polycrystalline`` behavior at low carrier concentrations. This behavior is attributed to the effective height of potential barriers formed at the low-angle grain boundaries in the epitaxial ZnO films. The trap density at the grain boundaries is deduced to be {approximately}7 {times} 10{sup 12}/cm{sup 2}. The electron mobility, at constant carrier concentration, varies with the substrate orientation on which the ZnO films were grown. The difference is attributed to the difference in dislocation density in the films produced as a result of lattice mismatch with the different sapphire orientations.

Sponsoring Organization:
USDOE
DOE Contract Number:
FG03-91ER45447
OSTI ID:
103626
Journal Information:
Journal of the American Ceramic Society, Journal Name: Journal of the American Ceramic Society Journal Issue: 7 Vol. 78; ISSN 0002-7820; ISSN JACTAW
Country of Publication:
United States
Language:
English

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