1 |
Phase stability and magnetic properties of SrFe18O27 W-type hexagonal ferrite Reimann T, Schmidt T, Topfer J Journal of the American Ceramic Society, 103(1), 324, 2020 |
2 |
Single and double-layer composite microwave absorbers with hexaferrite BaZn0.6Zr0.3X0.3Fe10.8O19 (X = Ti, Ce, Sn) powders Afhahi SSS, Jafarian M, Atassi Y, Stergiou CA Materials Chemistry and Physics, 186, 584, 2017 |
3 |
Use of magnetoplumbite and spinel ferrite seed layers for the growth of oriented Y ferrite thin films Uhrecky R, Bursik J, Soroka M, Kuzel R, Prokleska J Thin Solid Films, 622, 104, 2017 |
4 |
Implementing Room-Temperature Multiferroism by Exploiting Hexagonal-Orthorhombic Morphotropic Phase Coexistence in LuFeO3 Thin Films Song S, Han H, Jang HM, Kim YT, Lee NS, Park CG, Kim JR, Noh TW, Scott JF Advanced Materials, 28(34), 7430, 2016 |
5 |
SrAl12O19 thin films by chemical solution deposition and their use as buffer layers for oriented growth of hexagonal ferrites Bursik J, Uhrecky R, Kascakova D, Kuzel R, Holy V, Dopita M Thin Solid Films, 616, 228, 2016 |
6 |
Structural, morphological, magnetic and optical properties of chromium substituted strontium ferrites, SrCrxFe12-xO19 (x=0.5, 1.0, 1.5, 2.0 and 2.5) annealed with potassium halides Jauhar S, Singh J, Chandra K, Bansal S, Singhal S Powder Technology, 212(1), 193, 2011 |
7 |
Hexagonal ferrite powder synthesis using chemical coprecipitation Hsiang HI, Yao RQ Materials Chemistry and Physics, 104(1), 1, 2007 |
8 |
Co(2)Z type hexagonal ferrites prepared by sol-gel method Hahn DW, Han YH Materials Chemistry and Physics, 95(2-3), 248, 2005 |
9 |
High-Temperature Solutions of the (0.4Na(2)O-0.6B(2)O(3))-BaO-((6-X)Fe2O3+xcosno(3)) System - Crystallization Regions of Bafe12-(X+y)Coxsnyo19 Sole R, Ruiz X, Cabre R, Aguilo M, Diaz F, Nikolov V, Peshev P Materials Research Bulletin, 30(7), 909, 1995 |