Description
Experimental raw data for all figures presented in the paper “Smart design of porous Ni and Ni–W films with tunable mechanical and magnetic performance” are provided. The data were used to investigate the influence of tungsten content and porosity on the mechanical, magnetic, and structural properties of electrodeposited Ni and Ni–W films. Dense and porous samples were fabricated using colloidal crystal templates composed of 20 and 200 nm polystyrene spheres. The experimental dataset includes SEM and AFM micrographs (Figure 1), GIXRD diffraction patterns and Rietveld refinement parameters (Figure 2 and Table 1), nanoindentation load–depth curves and mechanical results (Figure 3 and Table 2), VSM hysteresis and FORC measurements (Figures 4–5), magnetization versus temperature curves (Figure 6), and thermal stability analyses obtained by FESEM after successive annealing steps (Figure 7). The complete dataset supports the discussion of how tungsten alloying and porosity affect mechanical hardness, elastic modulus, saturation magnetization, Curie temperature, and morphological stability of the Ni–W coatings.
| Date made available | 13 Nov 2025 |
|---|---|
| Publisher | CORA.Repositori de Dades de Recerca |
Projects
- 1 Finished
-
NICKEFFECT: Ni-BASED FERROMAGNETIC COATINGS WITH ENHANCED EFFICIENCY TO REPLACE Pt IN ENERGY & DIGITAL STORAGE APPLICATIONS
Pellicer Vila, E. M. (Principal Investigator), Sort Viñas, J. (Investigator), Arredondo Lopez, A. (Investigator), de Paz Castany, R. (Investigator) & Menendez Dalmau, E. (Investigator)
1/06/22 → 31/05/26
Project: International research project
Research output
- 1 Article
-
Smart design of porous Ni and Ni-W films with tunable mechanical and magnetic performance
de Paz-Castany, R., López-Pintó, N., Eiler, K., Stenning, G. B. G., Hubin, A., Pellicer Vilà, E. M. & Sort, J., 20 Nov 2025, In: Journal of Alloys and Compounds. 1046, 10 p., 184863.Research output: Contribution to journal › Article › Research › peer-review
Open Access
Cite this
- DataSetCite
- Short
- Compact