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Investigation of the effects of high-energy proton-beam irradiation on metal-oxide surfaces by using methane adsorption isotherms
- Kim, Euikwoun;
- Lee, Junggil;
- Kim, Jae Yong;
- Kim, Kyeryung
WEB OF SCIENCE
0SCOPUS
0초록
The creation of possible local defects on metal-oxide surfaces due to irradiation with a high-energy proton beam was investigated by using a series of gas adsorption isotherms for methane (CH4) on a MgO powder surface. After a MgO powder surface having only a (100) surface had been irradiated with a 35-MeV proton beam, the second atomic layer of methane had completely disappeared while two distinct atomic layers were found in a layer-by-layer fashion on the surfaces of unirradiated samples. This subtle modification of the surface is evidenced by a change of the contrasts in the morphologies measured a using a transmission electron microscopy. Combined results obtained from an electron microscopy and methane adsorption isotherms strongly suggest that the high-energy proton-beam irradiation induced a local surface modification by imparting kinetic energy to the sample. The calculation of the 2-dimensional compressibility values, which are responsible for the formation of the atomic layers, confirmed the surface modification after irradiating surface-clean MgO powders with a proton beam.
키워드
- 제목
- Investigation of the effects of high-energy proton-beam irradiation on metal-oxide surfaces by using methane adsorption isotherms
- 저자
- Kim, Euikwoun; Lee, Junggil; Kim, Jae Yong; Kim, Kyeryung
- 발행일
- 2012-07
- 유형
- Article; Proceedings Paper
- 권
- 61
- 호
- 2
- 페이지
- 278 ~ 281