The Primary Oxide Film on Iron
- 1 April 1937
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 5 (4) , 252-259
- https://doi.org/10.1063/1.1750015
Abstract
The identity and structure of the invisible, air‐formed oxide film on iron has never been determined although the practical importance of a knowledge of its properties in the study of corrosion has been demonstrated. Electron diffraction experiments are now reported which show this film to be structurally identical with Fe3O4. In addition, it is found that the oxide has a definite orientation relationship with the underlying iron, viz., the [√210] directions in the oxide crystals are parallel to the [111] directions in the iron. Freshly abraded surfaces of electrolytic and ingot iron were investigated. Evaporated films of electrolytic iron were prepared in the diffraction camera and pictures taken before and after exposure to air show that Fe3O4 forms rapidly in dry air at room temperature. An air pressure of 10—3 mm for a few minutes gave a measurable effect. Exposure to air at atmospheric pressure for periods longer than a few minutes does not greatly strengthen the oxide pattern. The factors affecting the sensitivity of this method of examining thin films on metals are discussed.Keywords
This publication has 9 references indexed in Scilit:
- LXXVIII.The structure of aluminium, chromium, and copper films evaporated on glassJournal of Computers in Education, 1936
- über die Struktur dünner MetallschichtenThe European Physical Journal A, 1936
- Orientation of Oxide Films on IronNature, 1936
- The Beilby LayerNature, 1936
- Orientation of Oxide Films on MetalsNature, 1934
- LXIV.The small-scale structure of surfacesJournal of Computers in Education, 1934
- Crystal structure and orientation in zinc-oxide filmsProceedings of the Physical Society, 1934
- Struktur und Wachstum dünner Oberflächenschichten auf Metallen bei Oxydation an LuftAnnalen der Physik, 1934
- A camera for electron diffractionProceedings of the Royal Society of London. Series A, Containing Papers of a Mathematical and Physical Character, 1930