arXiv · 2003.08025
Pressure-induced inverse order-disorder transition in double perovskites
Abstract
Given the consensus that pressure improves cation order in most of known materials, a discovery of pressure-induced disorder could require reconsideration of order-disorder transition in solid state physics/chemistry and geophysics. Double perovskites Y2CoIrO6 and Y2CoRuO6 synthesized at ambient pressure show B-site order, while the polymorphs synthesized at 6 and 15 GPa are partially-ordered and disordered respectively. With the decrease of ordering degrees, the lattices are shrunken and the crystal structures alter from monoclinic to orthorhombic symmetry. Correspondingly, long-range ferrimagnetic order in the B-site ordered phases are gradually overwhelmed by B-site disorder. Theoretical calculations suggest that unusual unit cell compressions under external pressures unexpectedly stabilize the disordered phases of Y2CoIrO6 and Y2CoRuO6.
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Zheng Deng, Chang-Jong Kang, Mark Croft, Wenmin Li, Xi Shen, Jianfa Zhao, Richeng Yu, Changqing Jin, Gabi Kotliar, Sizhan Liu, T. A. Tyson, Ryan Tappero, Martha Greenblatt. 2020-03-18. Pressure-induced inverse order-disorder transition in double perovskites. https://doi.org/10.1002/anie.202001922
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