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Ab initio investigation of impurity ferromagnetism in the pd1−xfex alloys: Concentration and position dependencesWe present the results of ab initio studies of the structural and magnetic properties of the Pd

Low-amount palladium supported on Fe-Cu MOF: Synergetic effect between Pd, Cu and Fe in Sonogashira-Hagihara coupling reaction and reduction of organic dyes for stabilization of Pd species. Obtained Pd(II)@NH2BDC-FeCu MOF could act as an effective environmental catalyst

Synthesis, characterization, and magnetoresistive properties of the epitaxial pd0.96fe0.04/vn/pd0.92fe0.08 superconducting spin-valve heterostructure with the magnetic moment reversals of the ferromagnetic Pd0.92Fe0.08 and Pd0.96Fe0.04 alloy layers. The moderate

Epitaxial growth and superconducting properties of thin-film PdFe/VN and VN/PdFe bilayers on MgO(001) substrates© 2020 Mohammed et al. Single-layer vanadium nitride (VN) and bilayer Pd0.96Fe0.04/VN and VN/Pd0

Epitaxial thin-film Pd1-xFe x alloy: a tunable ferromagnet for superconducting spintronics epitaxial films of the palladium-rich Pd1−xFex alloy were synthesized and extensively studied as a tunable

Structure and magnetic properties of nanostructured Pd-Fe thin films produced by pulse electrodepositionNanostructured Pd-Fe thin films with varied Fe content were prepared by electrodeposition technique

FMR Studies of Ultra-Thin Epitaxial Pd0.92Fe0.08Film
–iron alloy Pd0.92Fe0.08grown on the (001) MgO substrate were studied. Ferromagnetic resonance (FMR

Exchange Spring in a Heterostructure with Pd0.96Fe0.04 Low-Temperature Ferromagnet and the exchange-spring effect have been observed in thin-film heterostructures comprising layers of Pd0.96Fe0

Structure and magnetic properties of nanostructured Pd-Fe thin films produced by pulse electrodepositionNanostructured Pd-Fe thin films with varied Fe content were prepared by electrodeposition technique

Structure and mechanical properties of a low-density AlCrFeTi medium entropy alloy produced by spark plasma sinteringBulk equiatomic AlCrFeTi medium entropy alloy was produced by mechanical alloying (MA) and spark

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