Adsorption of ethylene oxide and vinyl chloride on an iron (011) surface and effect of these films on adhesion [electronic resource]
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- Created Date
- 1970
- Description
Includes bibliographical references (p. 16).
The influence of chlorine and oxygen in the ethylene molecule on adsorption to iron and the effect of these films on adhesion was studied with LEED and Auger analysis. The displacement of these films from an iron surface by oxygen was also examined. Results indicate that the presence of chlorine or oxygen in the ethylene molecule reduces the adhesion of iron to itself. Greater amounts of oxygen were necessary to displace vinyl chloride and ethylene oxide from an iron surface than was needed to displace ethylene. Ethylene oxide formed a close packed structure whereas a (9 X 2) structure on the (011) surface of iron was observed with vinyl chloride.
- Creator
Buckley, Donald H
- Partner
- HathiTrust
- Contributing Institution
- University of Illinois
- Publisher
- Washington, D.C. : National Aeronautics and Space Administration : [For sale by the Clearinghouse for Federal Scientific and Technical Information, Springfield, Virginia 22151]
- Type
- text
- Format
- Language materialElectronic resource
- Language
- English
- Rights
- Public domain. Learn more at http://www.hathitrust.org/access_use
- Chicago citation style
- Buckley, Donald H. Adsorption of ethylene oxide and vinyl chloride on an iron (011) surface and effect of these films on adhesion [electronic resource]. 1970. Retrieved from the Digital Public Library of America, http://catalog.hathitrust.org/Record/011444372. (Accessed March 29, 2024.)
- APA citation style
- Buckley, Donald H, (1970) Adsorption of ethylene oxide and vinyl chloride on an iron (011) surface and effect of these films on adhesion [electronic resource]. Retrieved from the Digital Public Library of America, http://catalog.hathitrust.org/Record/011444372
- MLA citation style
- Buckley, Donald H. Retrieved from the Digital Public Library of America <http://catalog.hathitrust.org/Record/011444372>.