Description
This dataset contains the information on our recent body of work on wireless magneto-ionics by bipolar electrochemistry approach and all the relevant data files. So far, magneto-ionics has been achieved through direct electrical connections to the actuated material. Here we evidence that an alternative way to reach such control exists in a wireless manner. Induced polarization in the conducting material immersed in the electrolyte, without direct wire contact, promotes wireless bipolar electrochemistry, an alternative pathway to achieve voltage-driven control of magnetism based on the same electrochemical processes involved in direct-contact magneto-ionics. A significant tunability of magnetization is accomplished for cobalt nitride thin films, including transitions between paramagnetic and ferromagnetic states. Such effects can be either volatile or non-volatile depending on the electrochemical cell configuration. These results represent a fundamental breakthrough that may inspire future device designs for applications in bioelectronics, catalysis, neuromorphic computing, or wireless communications.
| Date made available | 19 Sept 2023 |
|---|---|
| Publisher | CORA.Repositori de Dades de Recerca |
Research output
- 1 Article
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Wireless magneto-ionics : voltage control of magnetism by bipolar electrochemistry
Ma, Z., Fuentes-Rodríguez, L., Tan, Z., Pellicer Vilà, E. M., Abad, L., Herrero-Martín, J., Menéndez Dalmau, E., Casañ Pastor, N. & Sort Viñas, J., 14 Oct 2023, In: Nature Communications. 14, 1, 6486.Research output: Contribution to journal › Article › Research › peer-review
Open Access14 Link opens in a new tab Citations (Scopus)
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