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- W2018892008 abstract "Abstract Near-equiatomic Fe–Pd-based nanotubes with diameters of 200 nm and lengths of 1 μm were directly electrodeposited from a single electrolyte into polycarbonate templates. The as-deposited Fe50Pd50 nanotubes were then characterized compositionally, structurally and magnetically. The as-deposited Fe50Pd50 tubes had an fcc crystal structure and were magnetically soft (HC ≈ 10 kA/m), with the easy axis of the magnetization being parallel to the axes of the tubes. Angular-dependence measurements of the coercivity, where the hysteresis loops were measured as a function of the angle (θ) of the applied demagnetizing field, revealed a combination of magnetization reversal mechanisms, consisting of the curling mechanism, which dominates at low angles, with a transition to coherent rotation at angles ≥70°. The development of the coercivity with annealing temperature due to the L10 ordering was also investigated. For this purpose the as-deposited nanotubes were annealed at temperatures from 400 °C to 650 °C for 1 h in Ar + 7% H2 and the phase formation, the microstructure and the magnetic properties were analyzed. A maximum in the coercivity of 135 kA/m was achieved upon annealing at 550 °C." @default.
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- W2018892008 date "2011-01-01" @default.
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- W2018892008 title "Electrochemical syntheses of soft and hard magnetic Fe50Pd50-based nanotubes and their magnetic characterization" @default.
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- W2018892008 doi "https://doi.org/10.1016/j.jallcom.2010.09.108" @default.
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