Title :
Magnetic Properties of Iron Sulfides Doped With 3-D Transition-Metals
Author :
Kim, Sung Joon ; Kim, Eng Chan
Author_Institution :
Dept. of Phys., Yeungnam Univ., Gyongsan
fDate :
6/1/2009 12:00:00 AM
Abstract :
It is found by Mossbauer measurements on M0.025Fe0.975S (M=Sc , Ti, V, Cr, Mn, Fe, Co, Ni, and Cu) that the 3-D-transition metal impurities profoundly affect both the structural phase and the spin rotation transitions of iron sulfide. It is noteworthy that both V0.025Fe0.975S and Co0.025Fe0.975S have Morin transition temperatures TM which are distinctly different from that of FeS; furthermore, the directions of changes of TM are opposite for V0.025Fe0.975S and Co0.025Fe0.975S . A vanadium impurity of 2.5% of the metal atoms in the iron sulfide makes the structure transition take place rapidly in a narrow temperature region of about 15 K, while the alpha transition in FeS takes place over a wide temperature range of about 200 K. It is also found that the alpha transition for V0.025Fe0.975S has a hysteresis width of 5 K. It is noteworthy that the structural transition is independent of the lattice parameters while the spin-rotation transition is dependent on them.
Keywords :
Mossbauer effect; chromium compounds; cobalt compounds; copper compounds; doping; iron compounds; lattice constants; magnetic hysteresis; magnetic transitions; manganese compounds; nickel compounds; scandium compounds; solid-state phase transformations; titanium compounds; vanadium compounds; 3-D transition-metals; Co0.025Fe0.975S; Cr0.025Fe0.975S; Cu0.025Fe0.975S; Mn0.025Fe0.975S; Morin transition temperatures; Mossbauer measurements; Ni0.025Fe0.975S; Sc0.025Fe0.975S; Ti0.025Fe0.975S; V0.025Fe0.975S; hysteresis width; iron sulfides; lattice parameters; spin rotation transitions; structural phase transitions; temperature 15 K; temperature 200 K; vanadium impurity; 3-D-transition metal; ${hbox{M}}_{0.025}{hbox{Fe}}_{0.975}{hbox{S}}$ (${hbox{M}}={hbox{Sc}}$ , Ti, V, Cr, Mn, Fe, Co, Ni, and Cu); phase transition; spin-rotation;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2009.2018931