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Dielectric and Spin-Glass Magnetic Properties of the A-Site Columnar-Ordered Quadruple Perovskite Sm 2 CuMn(MnTi 3 )O 12 .

Alexei A BelikRan LiuKazunari Yamaura
Published in: Materials (Basel, Switzerland) (2022)
Perovskite-type ABO 3 oxides show a number of cation-ordered structures, which have significant effects on their properties. The rock-salt-type order is dominant for B cations, and the layered order for A cations. In this work, we prepared a new perovskite-type oxide, Sm 2 CuMn(MnTi 3 )O 12 , with a rare columnar A-site order using a high-pressure, high-temperature method at about 6 GPa and about 1700 K. Its crystal structure was studied with synchrotron powder X-ray diffraction. The compound crystallizes in space group P 4 2 / nmc (No. 137) at room temperature with a = 7.53477 Å and c = 7.69788 Å. The magnetic properties of the compound were studied with dc and ac magnetic susceptibility measurements and specific heat. Spin-glass (SG) magnetic properties were found with T SG = 7 K, while specific heat, in the form of C p / T , showed a strong, very broad anomaly developing below 20 K and peaking at 4 K. The dielectric constant of Sm 2 CuMn(MnTi 3 )O 12 was nearly frequency and temperature independent between 8 K and 200 K, with a value of about 50. Cu 2+ doping drastically modified the magnetic and dielectric properties of Sm 2 CuMn(MnTi 3 )O 12 in comparison with the parent compound Sm 2 MnMn(MnTi 3 )O 12 , which showed a long-range ferrimagnetic order at 34-40 K. The antisite disorder of Cu 2+ and Mn 2+ cations between square-planar and octahedral sites was responsible for the SG magnetic properties of Sm 2 CuMn(MnTi 3 )O 12 .
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