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Updated: Aug 6, 2026

Radio Frequency Magnetron Sputtering of GdBa2Cu3O7−δ/ La0.67Sr0.33MnO3 Quasi-bilayer Films on SrTiO3 (STO) Single-crystal Substrates
Published on: April 12, 2019
Single Crystal Growth and Magnetic Properties of BaCuO2
Han-Shu Xu1, Xin Zhang1, Xinyu Yin1
1Department of Applied Physics, School of Biomedical Engineering, Anhui Medical University, Hefei230032, China.
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High-quality BaCuO2 single crystals were successfully grown by a high-temperature BaCl2·2H2O flux method under an optimal slow-cooling condition of 1 °C/h within the temperature window of 980-800 °C. Structural characterizations confirm that BaCuO2 crystallizes in the cubic Im-3m structure with excellent crystallinity, homogeneous elemental distribution, and negligible oxygen-vacancy concentration. Magnetic susceptibility, magnetization, and specific-heat measurements consistently reveal an antiferromagnetic transition near TN = 11 K accompanied by pronounced short-range magnetic correlations. Although the Curie-Weiss fitting yields a positive Weiss temperature, the low-temperature thermodynamic response establishes an antiferromagnetic ground state arising from competing magnetic exchange interactions within the Cu-O cluster network. Importantly, the present single-crystal study demonstrates that BaCuO2 is intrinsically an insulating oxide rather than a semiconducting or superconductivity-related material, highlighting the crucial importance of high-quality single crystals for distinguishing intrinsic physical properties from impurity-driven effects in complex cuprate systems.

