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Stabilizing the Tb-based 214 cuprate by partial Pd substitution

Author(s): Oey, Yuzki M; Park, James Eujin; Tao, Jing; Carnicom, Elizabeth M; Kong, Tai; et al

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Abstract: Previously known to form only under high pressure synthetic conditions, here we report that the T′-type 214-structure cuprate based on the rare earth atom Tb is stabilized for ambient pressure synthesis through partial substitution of Pd for Cu. The new material is obtained in purest form for mixtures of nominal composition Tb1.96Cu0.8Pd0.2O4. The refined formula, in orthorhombic space group Pbca, with a = 5.5117(1) Å, b = 5.5088(1) Å, and c = 11.8818(1) Å, is Tb2Cu0.83Pd0.17O4. An incommensurate structural modulation is seen along the a axis by electron diffraction and high resolution imaging. Magnetic susceptibility measurements reveal long-range antiferromagnetic ordering at 7.9 K, with a less pronounced feature at 95 K; a magnetic moment reorientation transition is observed to onset at a field of approximately 1.1 T at 3 K. The material is an n-type semiconductor.
Publication Date: 15-May-2018
Electronic Publication Date: 15-May-2018
Citation: Oey, Yuzki M, Park, James Eujin, Tao, Jing, Carnicom, Elizabeth M, Kong, Tai, Sanders, Marisa B, Cava, RJ. (2018). Stabilizing the Tb-based 214 cuprate by partial Pd substitution. Journal of Materials Research, 33 (11), 1690 - 1697. doi:10.1557/jmr.2018.102
DOI: doi:10.1557/jmr.2018.102
ISSN: 0884-2914
EISSN: 2044-5326
Pages: 1690 - 1697
Language: en
Type of Material: Journal Article
Journal/Proceeding Title: Journal of Materials Research
Version: Author's manuscript



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