Phase transition in Pr0.5Ca0.5CoO3 and related cobaltites
J. Hejtmanek, Z. Jirak, O. Kaman, K. Knizek, E. Santava, K. Nitta, T., Naito, H. Fujishiro

TL;DR
This study investigates the metal-insulator transition in Pr0.5Ca0.5CoO3 and related cobaltites, revealing electron transfer between Pr and Co ions, spin state changes, and structural anomalies at low temperatures through comprehensive spectroscopic and magnetic measurements.
Contribution
It provides detailed evidence of electron transfer and spin crossover phenomena during the metal-insulator transition in cobaltites, linking valence changes with magnetic and structural anomalies.
Findings
Pr4+ ions appear at low temperatures during the transition.
Electron transfer between Pr3+ and Co ions is confirmed.
The transition involves a spin state change from intermediate to low spin.
Abstract
We present an extensive investigation (magnetic, electric and thermal measurements and X-ray absorption spectroscopy) of the Pr0.5Ca0.5CoO3 and (Pr1-yYy)0.7Ca0.3CoO3 (y=0.0625-0.15) perovskites, in which a peculiar metal-insulator (M-I) transition, accompanied with pronounced structural and magnetic anomalies, occurs at 76 K and 40-132 K, respectively. The inspection of the M-I transition using the XANES data of Pr L3-edge and Co K-edge proofs the presence of Pr4+ ions at low temperatures and indicates simultaneously the intermediate spin to low spin crossover of Co species on lowering the temperature. The study thus definitively confirms the synchronicity of the electron transfer between Pr3+ ions and Co^(3+/4+)O3 subsystem and the transition to the low-spin, less electrically conducting phase. The large extent of the transfer is evidenced by the good quantitative agreement of the…
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