Matthew A. Wright, Alex R. Neale, Andrés Acín-Lalanza, Hui Gao, Matthew J. Rosseinsky, Andrew I. Cooper, Laurence J. Hardwick
High Resolution Image Download MS PowerPoint Slide Magnesium batteries offer a promising alternative to lithium-ion systems, but suitable electrodes remain limited. Covalent organic frameworks (COFs) are attractive candidates due to their structural tunability and open channels for ion transport. We report a pyrene- 4,5,9,10-tetraone COF composite with carbon nanotubes as a Mg electrode, delivering 70 mAh g –1 at 200 mA g –1 and operating at 1.3 V. In situ Raman spectroscopy confirms carbonyl-centered redox on pyrene tetraone, supporting a Mg 2+ -driven carbonyl reduction. Compared with Li +, only partial carbonyl utilization occurs, attributed to steric and electrostatic constraints of divalent Mg 2+ . This incomplete conversion to magnesium-enolate inspires future work toward structural optimization.