Giannopoulos, Georgios; Barucca, G.; Kaidatzis, Andreas; Psycharis, Vassilis P.; Salikhov, Ruslan; Farle, Michael; Koutsouflakis, E.; Niarchos, Dimitris G.; Mehta, Apurva; Scuderi, M.; Nicotra, Giuseppe; Spinella, Corrado R.; Laureti, Sara; Varvaro, Gaspare:
L1₀-FeNi films on Au-Cu-Ni buffer-layer : a high-throughput combinatorial study
In: Scientific Reports, Vol. 8 (2018), No. 1, Article 15919
2018article/chapter in journalOA Gold
Physics (incl. Astronomy)Faculty of Physics » Experimental PhysicsScientific institutes » Center for Nanointegration Duisburg-Essen (CENIDE)
Related: 1 publication(s)
Title in English:
L1₀-FeNi films on Au-Cu-Ni buffer-layer : a high-throughput combinatorial study
Author:
Giannopoulos, Georgios
Other
corresponding author
;
Barucca, G.
ORCID
0000-0002-7368-6264ORCID iD
Other
corresponding author
;
Kaidatzis, Andreas
ORCID
0000-0003-0301-3651ORCID iD
;
Psycharis, Vassilis P.
;
Salikhov, RuslanUDE
LSF ID
59827
Other
connected with university
;
Farle, MichaelUDE
GND
1029383219
LSF ID
3560
ORCID
0000-0002-1864-3261ORCID iD
Other
connected with university
;
Koutsouflakis, E.
;
Niarchos, Dimitris G.
ORCID
0000-0002-6256-7497ORCID iD
;
Mehta, Apurva
;
Scuderi, M.
ORCID
0000-0001-9026-5317ORCID iD
;
Nicotra, Giuseppe
ORCID
0000-0002-7336-4898ORCID iD
;
Spinella, Corrado R.
;
Laureti, Sara
;
Varvaro, Gaspare
ORCID
0000-0001-7313-7268ORCID iD
Year of publication:
2018
Open Access?:
OA Gold
Web of Science ID
PubMed ID
Scopus ID
Note:
CA extern
Language of text:
English

Abstract in English:

The fct L10-FeNi alloy is a promising candidate for the development of high performance critical-elements-free magnetic materials. Among the different materials, the Au-Cu-Ni alloy has resulted very promising; however, a detailed investigation of the effect of the buffer-layer composition on the formation of the hard FeNi phase is still missing. To accelerate the search of the best Au-Cu-Ni composition, a combinatorial approach based on High-Throughput (HT) experimental methods has been exploited in this paper. HT magnetic characterization methods revealed the presence of a hard magnetic phase with an out-of-plane easy-axis, whose coercivity increases from 0.49 kOe up to 1.30 kOe as the Au content of the Cu-Au-Ni buffer-layer decreases. Similarly, the out-of-plane magneto-crystalline anisotropy energy density increases from 0.12 to 0.35 MJ/m3. This anisotropy is attributed to the partial formation of the L10 FeNi phase induced by the buffer-layer. In the range of compositions we investigated, the buffer-layer structure does not change significantly and the modulation of the magnetic properties with the Au content in the combinatorial layer is mainly related to the different nature and extent of interlayer diffusion processes, which have a great impact on the formation and order degree of the L10 FeNi phase.