Abstract
We report the magnetic behavior of the hybrid perovskites [Gua]Mn1-xFe2x/3□x/3(HCOO)3 (0 ≤ x ≤ 0.88), showing that vacancy ordering drives bulk ferrimagnetism for x > 0.6. The behavior is rationalized in terms of a simple microscopic model of percolation-induced ferrimagnetism. Monte Carlo simulations driven by this model reproduce the experimental dependence of magnetic susceptibility on x and show that, at intermediate compositions, domains of short-range vacancy order lead to the emergence of local magnetization. Our results open up a new avenue for the design of multiferroic hybrid perovskites.
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CITATION STYLE
Bulled, J. M., Willis, A., Faure Beaulieu, Z., Cassidy, S. J., Bruckmoser, J., Boström, H. L. B., & Goodwin, A. L. (2024). Percolation-Induced Ferrimagnetism from Vacancy Order in [Gua]Mn1-xFe2x/3(HCOO)3 Hybrid Perovskites. Journal of the American Chemical Society, 146(20), 13714–13718. https://doi.org/10.1021/jacs.4c03407
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