Magnetocaloric efficiency tuning through solvent-triggered 3D to 2D interconversion in holmium(iii)-based dynamic MOFs

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Abstract

The neutral holmium(iii) oxalate octadecahydrate {[Ho2(ox)3(H2O)6]·12H2O}n of mixed hexagonal/decagonal (63·103) 3D net topology shows important changes in the magnetocaloric efficiency upon dehydration/rehydration by heating and water vapor exposition to give the holmium(iii) oxalate decahydrate {[Ho2(ox)3(H2O)6]·4H2O}n of hexagonal (63) 2D net topology through the intermediacy of the elusive amorphous anhydrous compound {Ho2(ox)3}n

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El Alouani Dahmouni, N., Orts-Arroyo, M., Sanchis-Perucho, A., Moliner, N., Mayans, J., Pacheco, M., … Martínez-Lillo, J. (2024). Magnetocaloric efficiency tuning through solvent-triggered 3D to 2D interconversion in holmium(iii)-based dynamic MOFs. Chemical Communications, 60(58), 7451–7454. https://doi.org/10.1039/d4cc02539c

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