Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5461131 | Journal of Alloys and Compounds | 2017 | 22 Pages |
Abstract
Single phase Mn0.66Fe1.29P1-xSix (0 â¤Â x â¤Â 0.42) compounds were synthesized using the melt-spinning (rapid solidification) technique. All the compounds form in the Fe2P-type hexagonal structure, except a Co2P-type orthorhombic structure of the Si-free Mn0.66Fe1.29P compound. The compounds with 0.24 â¤Â x â¤Â 0.42 present a FM-PM phase transition, while the compounds with lower Si content show an AFM-PM phase transition. In the Mn0.66Fe1.29P1-xSix compounds, TC and ÎThys are not only Si content dependent, but also magnetic field dependent. By increasing the Si content from x = 0.24 to 0.42, TC increases from 195 to 451 K and ÎThys is strongly reduced from â¼61 to â¼1 K. TC increases and ÎThys decreases with increasing magnetic field, ÎTC/ÎB is about 4.4 K/T. Mn0.66Fe1.29P1-xSix compounds show large saturation magnetic moments with values up to 4.57 μB/f.u.. A large MCE with a small thermal hysteresis is obtained simultaneously in Fe-rich Mn0.66Fe1.29P1-xSix melt-spun ribbons.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Z.Q. Ou, L. Zhang, N.H. Dung, L. Caron, E. Brück,