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Updated: Sep 14, 2025

Protocol of Electrochemical Test and Characterization of Aprotic Li-O2 Battery
Published on: July 12, 2016
Spin regulation and magnetohydrodynamic effects driven novel magnetic field-assisted LiO2 battery
Daming Yang1, Ji Qi2, Guiru Sun1
1Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education, Jilin Normal University, Changchun 130103, China.
Abstract:
Lithium‑oxygen battery (LOB) has attracted great interest due to its ultra-high theoretical specific capacity. However, the practical application of the LOB is obstructed by the high kinetic barriers and large overpotentials. Hence, a novel magnetic field assisted LOB (MF-LOB) is developed with ferromagnetic FeCo2O4 nanowires as catalyst that can improve the ORR and OER kinetics through the application of a moderate magnetic field. The FeCo2O4 nanowires are magnetized into nanomagnets with high spin polarization under a magnetic field, which is beneficial to the adsorption of O2-intermediates and transfer of electrons. Equally, the MHD effect contributes to the mass transport and diffusion including O2 and Li+. The generation and oxidation of Li2O2 are promoted for the MF-LOB based on FeCo2O4 nanowires due to the high spin polarization and MHD effect. The MF-LOB based on FeCo2O4 nanowires shows a lower overpotential of 0.89 V and longer cycle life of 150 cycles than those (1.22 V and 53 cycles) of the LOB without the magnetic field. This unique in-situ magnetic enhancement strategy for optimizing catalyst performance provides a new idea for the development of high-performance external field assisted LOBs.
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