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- W2025305224 abstract "Y2(Co1−xFex)17compounds homogenized at 1050 °C form a continuous solid solution with a Th2Ni17-type hexagonal structure. The composition dependences of the lattice parameter c, the saturation magnetization and the hyperfine field of these compounds are similar, with a peak appearing near x = 0.6 in all cases. This is believed to be due to the unequal densities of states of the spin-up and spin-down 3d subbands of the transition metal involved. Mössbauer effect studies indicate that the iron atoms preferentially occupy the 4f site in the hexagonal lattice with the c axis as the easy direction of magnetization when x = 0.2 − 0.5. The mean isomer shift of the Mössbauer spectra of Y2(Co1−xFex)17 decreases monotonically with increasing x, implying that the number of 3d electrons increases with increasing cobalt content. In addition, a hyperfine field distribution was found at various transition metal sublattice sites." @default.
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- W2025305224 date "1985-05-01" @default.
- W2025305224 modified "2023-10-16" @default.
- W2025305224 title "Mössbauer effect study of Y2(Co1−xFex)17 compounds" @default.
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- W2025305224 doi "https://doi.org/10.1016/0022-5088(85)90235-8" @default.
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