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Thermal conductivity reduction by nanostructuration in electrodeposited CuNi alloys
Manzano, C. V., Caballero-Calero, O., Tranchant, M., Bertero, E., Cervino-Solana, P., Martin-Gonzalez, M., & Philippe, L. (2021). Thermal conductivity reduction by nanostructuration in electrodeposited CuNi alloys. Journal of Materials Chemistry C, 9(10), 3447-3454. https://doi.org/10.1039/d1tc00307k
Stainless steel-like FeCrNi nanostructures <em>via</em> electrodeposition into AAO templates using a mixed-solvent Cr(III)-based electrolyte
Bertero, E., Manzano, C. V., Bürki, G., & Philippe, L. (2020). Stainless steel-like FeCrNi nanostructures via electrodeposition into AAO templates using a mixed-solvent Cr(III)-based electrolyte. Materials and Design, 190, 108559 (7 pp.). https://doi.org/10.1016/j.matdes.2020.108559
'Green' Cr(<sub>III</sub>)–glycine electrolyte for the production of FeCrNi coatings: electrodeposition mechanisms and role of by-products in terms of coating composition and microstructure
Bertero, E., Manzano, C. V., Pellicer, E., Sort, J., Ulfig, R. M., Mischler, S., … Philippe, L. (2019). 'Green' Cr(III)–glycine electrolyte for the production of FeCrNi coatings: electrodeposition mechanisms and role of by-products in terms of coating composition and microstructure. RSC Advances, 9(44), 25762-25775. https://doi.org/10.1039/C9RA04262H