Local electronic and magnetic properties of pure and Mn-containing magnetocaloric LaFe sub(13-x)Si sub(x) compounds inferred from Mossbauer spectroscopy and magnetometry
Manganese containing La-Fe-Si alloys are important magnetocaloric compounds, since Mn atoms prevent segregation of hydrogen in partially hydrogenated La-Fe-Mn-Si alloys when their Curie temperature is tuned to room temperature by hydrogen. The effect of Mn alloying on the Fe atomic magnetic moment [...
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Published in | Journal of physics. D, Applied physics Vol. 48; no. 30; pp. 1 - 12 |
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Main Authors | , , , , , , , |
Format | Journal Article |
Language | English |
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05.08.2015
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Abstract | Manganese containing La-Fe-Si alloys are important magnetocaloric compounds, since Mn atoms prevent segregation of hydrogen in partially hydrogenated La-Fe-Mn-Si alloys when their Curie temperature is tuned to room temperature by hydrogen. The effect of Mn alloying on the Fe atomic magnetic moment [mu[subFe]] is still rather unexplored. Therefore, we investigated the (local) magnetic and electric hyperfine interactions in the strongly magnetocaloric compound LaFe[sub 11.3]Mn[sub 0.3]Si[sub 1.4] and, for comparison, LaFe[sub 11.6]Si[sub 1.4] by [sup 57]Fe Mossbauer spectroscopy, and the global magnetic properties by vibrating sample magnetometry. Our Mossbauer results are in good agreement with magnetometry, which reveals a reduction of the saturation magnetization of M[subs] = 163.1(1)Am[sup 2] kg[sup -1] of LaFe[sub 11.6]Si[sub 1.4] by 10.5% due to Mn substitution. |
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AbstractList | Manganese containing La-Fe-Si alloys are important magnetocaloric compounds, since Mn atoms prevent segregation of hydrogen in partially hydrogenated La-Fe-Mn-Si alloys when their Curie temperature is tuned to room temperature by hydrogen. The effect of Mn alloying on the Fe atomic magnetic moment [mu[subFe]] is still rather unexplored. Therefore, we investigated the (local) magnetic and electric hyperfine interactions in the strongly magnetocaloric compound LaFe[sub 11.3]Mn[sub 0.3]Si[sub 1.4] and, for comparison, LaFe[sub 11.6]Si[sub 1.4] by [sup 57]Fe Mossbauer spectroscopy, and the global magnetic properties by vibrating sample magnetometry. Our Mossbauer results are in good agreement with magnetometry, which reveals a reduction of the saturation magnetization of M[subs] = 163.1(1)Am[sup 2] kg[sup -1] of LaFe[sub 11.6]Si[sub 1.4] by 10.5% due to Mn substitution. |
Author | Krautz, Maria Salamon, Soma Teixeira, Cristiano S Wende, Heiko Skokov, Konstantin Gutfleisch, Oliver Makarov, Sergey I Keune, Werner |
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SubjectTerms | Alloys Curie temperature Hydrogen storage Magnetic properties Manganese Manganese base alloys Mossbauer spectroscopy Saturation (magnetic) |
Title | Local electronic and magnetic properties of pure and Mn-containing magnetocaloric LaFe sub(13-x)Si sub(x) compounds inferred from Mossbauer spectroscopy and magnetometry |
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