Abstract
Co-ferrite thin films were prepared by sputtering and subsequent annealing. Magnetic properties were strongly dependent on annealing temperature, annealing duration and film thickness. A coercivity as high as 9.3 kOe was achieved in the Co-ferrite film with a thickness of 50 nm. A small film thickness can restrict the formation of large particles. The high coercivity was associated with a nano-structure and lattice strain.
Citation Formats
Wang, Y C, Ding, J, Yi, J B, Liu, B H, Yu, T, and Shen, Z X.
High coercivity Co-ferrite thin films on SiO{sub 2} (1 0 0) substrate.
Netherlands: N. p.,
2004.
Web.
doi:10.1016/j.jmmm.2004.04.048.
Wang, Y C, Ding, J, Yi, J B, Liu, B H, Yu, T, & Shen, Z X.
High coercivity Co-ferrite thin films on SiO{sub 2} (1 0 0) substrate.
Netherlands.
https://doi.org/10.1016/j.jmmm.2004.04.048
Wang, Y C, Ding, J, Yi, J B, Liu, B H, Yu, T, and Shen, Z X.
2004.
"High coercivity Co-ferrite thin films on SiO{sub 2} (1 0 0) substrate."
Netherlands.
https://doi.org/10.1016/j.jmmm.2004.04.048.
@misc{etde_20618243,
title = {High coercivity Co-ferrite thin films on SiO{sub 2} (1 0 0) substrate}
author = {Wang, Y C, Ding, J, Yi, J B, Liu, B H, Yu, T, and Shen, Z X}
abstractNote = {Co-ferrite thin films were prepared by sputtering and subsequent annealing. Magnetic properties were strongly dependent on annealing temperature, annealing duration and film thickness. A coercivity as high as 9.3 kOe was achieved in the Co-ferrite film with a thickness of 50 nm. A small film thickness can restrict the formation of large particles. The high coercivity was associated with a nano-structure and lattice strain.}
doi = {10.1016/j.jmmm.2004.04.048}
journal = []
issue = {5-6}
volume = {282}
journal type = {AC}
place = {Netherlands}
year = {2004}
month = {Nov}
}
title = {High coercivity Co-ferrite thin films on SiO{sub 2} (1 0 0) substrate}
author = {Wang, Y C, Ding, J, Yi, J B, Liu, B H, Yu, T, and Shen, Z X}
abstractNote = {Co-ferrite thin films were prepared by sputtering and subsequent annealing. Magnetic properties were strongly dependent on annealing temperature, annealing duration and film thickness. A coercivity as high as 9.3 kOe was achieved in the Co-ferrite film with a thickness of 50 nm. A small film thickness can restrict the formation of large particles. The high coercivity was associated with a nano-structure and lattice strain.}
doi = {10.1016/j.jmmm.2004.04.048}
journal = []
issue = {5-6}
volume = {282}
journal type = {AC}
place = {Netherlands}
year = {2004}
month = {Nov}
}