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Robust Crystal Phase Separation with Distinct Charge, Orbital, and Spin Orders in AgMn7O12

INORGANIC CHEMISTRY(2024)

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Abstract
An AA ' 3B4O12-type A-site-ordered quadruple perovskite oxide AgMn7O12 was prepared by high-pressure and high-temperature methods. At room temperature, the compound crystallizes into a cubic Im3 symmetry with a charge distribution of AgMn33+Mn43.5+O12. With the temperature decreasing to T-CO,T-OO approximate to 180 K, the compound undergoes a structural phase transition toward a monoclinic C2/m symmetry, giving rise to a B-site charge- and orbital-ordered AgMn33+Mn23+Mn24+O12 phase. Moreover, this charge-/orbital-ordered main phase coexists with the initial cubic AgMn33+Mn43.5+O12 phase in the wide temperature range we measured. The charge-/orbital-ordered phase shows two antiferromagnetic phase transitions near 125 and 90 K, respectively. Short-range ferromagnetic correlations are found to occur for the initial B-site mixed cubic phase around 35 K. Because of the robust phase separation, considerable magnetoresistance effects are observed below T-CO,T-OO in AgMn7O12.
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