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Unraveling the dealloying mechanism of a Au33Fe67 metastable precursor for a low-cost nanoporous gold production

Articolo
Data di Pubblicazione:
2024
Abstract:
A low-cost Nanoporous Gold (NPG) has been successfully prepared by chemical dealloying of a Au33Fe67 supersaturated solid solution, whose ribbons were obtained by rapid solidification using melt-spinning technique. The dealloying procedures were carried out in 1 M HNO3 at 70 °C for varying durations. As-quenched ribbon and dealloyed samples have been structurally and compositionally investigated using XRD, FESEM and EDS techniques. The obtained NPG is homogeneous with tunable ligament size and shape, easy-to-handle and free-standing. Most notably, a metastable precursor has been favourably obtained from an immiscible Au-Fe system. Furthermore, according to the characterization results, a mechanism of dealloying has been proposed. Pairing Au with cheap and abundant Fe and fabricating an Fe-rich precursor gives an exceedingly cost-effective starting material. No usage of critical raw materials is involved. Then, employing a straight-forward and rapid dealloying procedure to obtain the NPG sample, makes for an overall inexpensive and sustainable production.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
Au-Fe; Dealloying; Magnetic properties; Mechanism; Nanoporous Gold
Elenco autori:
Raj, Deepti; Fiore, Gianluca; Celegato, Federica; Coïsson, Marco; Barrera, Gabriele; Scaglione, Federico; Tiberto, Paola; Rizzi, Paola
Autori di Ateneo:
RIZZI Paola
SCAGLIONE Federico
Link alla scheda completa:
https://iris.unito.it/handle/2318/2056911
Link al Full Text:
https://iris.unito.it/retrieve/handle/2318/2056911/1564798/Raj%20D._JALCOM_2024_Post%20Print.pdf
Pubblicato in:
JOURNAL OF ALLOYS AND COMPOUNDS
Journal
Progetto:
Compagnia di San Paolo -Bando ex-post 2020 - "WeSensBio" -Cda 21/12/2021
  • Aree Di Ricerca

Aree Di Ricerca

Settori (2)


PE11_2 - Engineering of metals and alloys - (2024)

PE11_9 - Nanomaterials engineering, e.g. nanoparticles, nanoporous materials, 1D & 2D nanomaterials - (2024)
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