High-Pressure-Stabilized Post-Spinel Phase of CdFe 2 O 4 with Distinct Magnetism from Its Ambient-Pressure Spinel Phase.

Inorganic chemistry(2023)

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摘要
α-CdFeO stabilizes its normal spinel structure due to the covalent Cd-O bond, in which all the connections between adjacent FeO octahedral are edge-shared, forming a typical geometrically frustrated Fe magnetic lattice. As the high-pressure methods were utilized, the post-spinel phase β-CdFeO with a CaFeO-type structure was synthesized at 8 GPa and 1373 K. The new polymorph has an orthorhombic structure with the space group and an 11.5% higher density than that of its normal spinel polymorph (α-CdFeO) synthesized at ambient conditions. The edge-shared FeO octahedra form zigzag = 5/2 spin ladders along the -axis dominating its low-dimensional magnetic properties at high temperatures and a long-range antiferromagnetic ordering with a high Néel temperature of = 350 K. Further, the rearrangement of magnetic ordering was found to occur around = 265 K, below which the competition of two phases or several couplings induce complex antiferromagnetic behaviors.
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