arXiv · 2509.24518
Charge-localization-driven metal-insulator phase transition in layered molecular conductors
Abstract
The organic conductor $\alpha$-(BEDT-TTF)$_2$I$_3$ provides the prime example of a charge-order-driven metal-insulator transition. Restricted chemical substitution of S atoms by Se in the constituent molecules allows us to modify the electronic properties. This not only decreases the transition temperature but, in addition, alters the phase transition mechanism, resulting in the ground state deviating from the charge-ordered insulator state of the parent compound. Employing infrared optical spectroscopy, we investigate changes in the charge dynamics. Furthermore, we demonstrate the absence of charge ordering in the Se-substituted materials and suggest that the phase transition is instead driven by the localization of the itinerant charge carriers due to strong electron-phonon interactions.
Explore related subjects
Keep this discovery
Savita Priya, Maxim Wenzel, Olga Iakutkina, Marvin Schmidt, Christian Prange, Dieter Schweitzer, Yohei Saito, Reizo Kato, Koichi Hiraki, Martin Dressel. 2025-09-29. Charge-localization-driven metal-insulator phase transition in layered molecular conductors. https://doi.org/10.1103/vksv-5b9b
Cite the original work for its findings. Save a collection to share your selection of sources.