Abstract
Fe and Ni doped-TiO{sub 2} thin films were grown by laser ablation on silicon substrates. Either with Fe or Ni doping, films were established as rutile. Rutherford back scattering data showed that Fe and Ni atoms were localized mostly near the surface. All films exhibited room temperature ferromagnetism (FM) but the films with lower dopant contents seem to have a better crystallinity and a stronger FM.
Citation Formats
Hong, Nguyen Hoa, Sakai, Joe, and Prellier, W.
Distribution of dopant in Fe:TiO{sub 2} and Ni:TiO{sub 2} thin films.
Netherlands: N. p.,
2004.
Web.
doi:10.1016/j.jmmm.2004.04.125.
Hong, Nguyen Hoa, Sakai, Joe, & Prellier, W.
Distribution of dopant in Fe:TiO{sub 2} and Ni:TiO{sub 2} thin films.
Netherlands.
https://doi.org/10.1016/j.jmmm.2004.04.125
Hong, Nguyen Hoa, Sakai, Joe, and Prellier, W.
2004.
"Distribution of dopant in Fe:TiO{sub 2} and Ni:TiO{sub 2} thin films."
Netherlands.
https://doi.org/10.1016/j.jmmm.2004.04.125.
@misc{etde_20618189,
title = {Distribution of dopant in Fe:TiO{sub 2} and Ni:TiO{sub 2} thin films}
author = {Hong, Nguyen Hoa, Sakai, Joe, and Prellier, W}
abstractNote = {Fe and Ni doped-TiO{sub 2} thin films were grown by laser ablation on silicon substrates. Either with Fe or Ni doping, films were established as rutile. Rutherford back scattering data showed that Fe and Ni atoms were localized mostly near the surface. All films exhibited room temperature ferromagnetism (FM) but the films with lower dopant contents seem to have a better crystallinity and a stronger FM.}
doi = {10.1016/j.jmmm.2004.04.125}
journal = []
issue = {2-3}
volume = {281}
journal type = {AC}
place = {Netherlands}
year = {2004}
month = {Oct}
}
title = {Distribution of dopant in Fe:TiO{sub 2} and Ni:TiO{sub 2} thin films}
author = {Hong, Nguyen Hoa, Sakai, Joe, and Prellier, W}
abstractNote = {Fe and Ni doped-TiO{sub 2} thin films were grown by laser ablation on silicon substrates. Either with Fe or Ni doping, films were established as rutile. Rutherford back scattering data showed that Fe and Ni atoms were localized mostly near the surface. All films exhibited room temperature ferromagnetism (FM) but the films with lower dopant contents seem to have a better crystallinity and a stronger FM.}
doi = {10.1016/j.jmmm.2004.04.125}
journal = []
issue = {2-3}
volume = {281}
journal type = {AC}
place = {Netherlands}
year = {2004}
month = {Oct}
}