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Martins S, Ma Z, Solans-Monfort X, et al. (2022) Enhancing magneto-ionic effects in cobalt oxide films by electrolyte engineering. Nanoscale Horizons
Tan Z, Martins S, Escobar M, et al. (2022) From Binary to Ternary Transition-Metal Nitrides: A Boost toward Nitrogen Magneto-Ionics. Acs Applied Materials & Interfaces
de Rojas J, Salguero J, Ibrahim F, et al. (2021) Magneto-Ionics in Single-Layer Transition Metal Nitrides. Acs Applied Materials & Interfaces
Navarro Senent C, Quintana A, Isarain-Chávez E, et al. (2020) Enhancing magneto-ionic effects in magnetic nanostructured films via conformal deposition of nanolayers with oxygen getter/donor capabilities. Acs Applied Materials & Interfaces
Robbennolt S, Nicolenco A, Mercier Fernandez P, et al. (2019) Electric Field Control of Magnetism in Iron Oxide Nanoporous Thin Films. Acs Applied Materials & Interfaces
Robbennolt S, Menéndez E, Quintana A, et al. (2019) Reversible, Electric-Field Induced Magneto-Ionic Control of Magnetism in Mesoporous Cobalt Ferrite Thin Films. Scientific Reports. 9: 10804
Navarro-Senent C, Fornell J, Isarain-Chávez E, et al. (2018) Large magnetoelectric effects in electrodeposited nanoporous micro-disks driven by effective surface charging and magneto-ionics. Acs Applied Materials & Interfaces
Quintana A, Menéndez E, Liedke MO, et al. (2018) Voltage-Controlled ON-OFF Ferromagnetism at Room Temperature in a Single Metal Oxide Film. Acs Nano
Dislaki E, Robbennolt S, Campoy-Quiles M, et al. (2018) Coercivity Modulation in Fe-Cu Pseudo-Ordered Porous Thin Films Controlled by an Applied Voltage: A Sustainable, Energy-Efficient Approach to Magnetoelectrically Driven Materials. Advanced Science (Weinheim, Baden-Wurttemberg, Germany). 5: 1800499
Robbennolt S, Quintana A, Pellicer E, et al. (2018) Large magnetoelectric effects mediated by electric-field-driven nanoscale phase transformations in sputtered (nanoparticulate) and electrochemically dealloyed (nanoporous) Fe-Cu films. Nanoscale. 10: 14570-14578
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