Structural evolution and magnetic properties of nano-granular metallic alloys
Fe clusters have been dispersed in Ag matrices using cluster beam (CB) sources without any heat treatment. Their structure and morphology have been studied by comparison with those of the sputter-deposited FeAg alloys using small angle X-ray scattering, high resolution transmission electron microsc...
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Published in | Journal of non-crystalline solids Vol. 192-193; pp. 539 - 545 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.12.1995
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Abstract | Fe clusters have been dispersed in Ag matrices using cluster beam (CB) sources without any heat treatment. Their structure and morphology have been studied by comparison with those of the sputter-deposited FeAg alloys using small angle X-ray scattering, high resolution transmission electron microscopy and extended X-ray absorption fine structure measurements. In the granular alloys made by CB, bcc Fe clusters of a few nanometers dimension are detected, together with ten-nanometer scale geometrical and chemical fluctuations. In the sputter-deposited alloys, the Fe atoms are rather well mixed with the Ag atoms in the as-deposited state, and fcc Fe clusters are first formed and transform to larger bcc particles with increasing annealing temperature. The field-dependence of the magnetoresistance is well correlated with the growth mode of the Fe clusters in the granular alloys. |
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AbstractList | Fe clusters have been dispersed in Ag matrices using cluster beam (CB) sources without any heat treatment. Their structure and morphology have been studied by comparison with those of the sputter-deposited FeAg alloys using small angle X-ray scattering, high resolution transmission electron microscopy and extended X-ray absorption fine structure measurements. In the granular alloys made by CB, bcc Fe clusters of a few nanometers dimension are detected, together with ten-nanometer scale geometrical and chemical fluctuations. In the sputter-deposited alloys, the Fe atoms are rather well mixed with the Ag atoms in the as-deposited state, and fcc Fe clusters are first formed and transform to larger bcc particles with increasing annealing temperature. The field-dependence of the magnetoresistance is well correlated with the growth mode of the Fe clusters in the granular alloys. |
Author | Suzuki, K Sakurai, M Makhlouf, S.A Kamiyama, T Konno, T.J Sumiyama, K Xu, Y.F Wakoh, K Hihara, T Yamamuro, S |
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CitedBy_id | crossref_primary_10_1016_j_matlet_2018_08_070 crossref_primary_10_1021_cr040090g crossref_primary_10_1016_j_jallcom_2013_02_033 crossref_primary_10_1016_j_comptc_2013_11_001 crossref_primary_10_1016_S0965_9773_98_00086_5 crossref_primary_10_1021_am301572u |
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