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  CaCu3Mn2Te2O12: An Intrinsic Ferrimagnetic Insulator Prepared Under High Pressure

Zhao, H., Bai, Y., Yin, K., Wang, X., Liu, Z., Ye, X., et al. (2023). CaCu3Mn2Te2O12: An Intrinsic Ferrimagnetic Insulator Prepared Under High Pressure. Inorganic Chemistry, 62(51), 21233-21239. doi:10.1021/acs.inorgchem.3c03288.

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Zhao, Haoting1, Autor
Bai, Yujie1, Autor
Yin, Kang1, Autor
Wang, Xiao1, Autor
Liu, Zhehong1, Autor
Ye, Xubin1, Autor
Lu, Dabiao1, Autor
Zhang, Jie1, Autor
Pi, Maocai1, Autor
Hu, Zhiwei2, Autor           
Lin, Hong-Ji1, Autor
Chen, Chien-Te1, Autor
Meng, Qingbo1, Autor
Yu, Pu1, Autor
Zhang, Qinfang1, Autor
Long, Y.1, Autor
Affiliations:
1External Organizations, ou_persistent22              
2Zhiwei Hu, Physics of Correlated Matter, Max Planck Institute for Chemical Physics of Solids, Max Planck Society, ou_1863461              

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Schlagwörter: Copper compounds, Energy gap, Ferrimagnetism, Manganese compounds, Optical data processing, Perovskite, cupric ion, perovskite, Antiferro-magnetic interactions, Antiferromagnetic interaction, Ferrimagnetic insulators, Ferrimagnetics, High pressure, High temperatures and high pressures, High-pressure condition, Perovskite structures, Synthesised, Temperature-pressure conditions, article, controlled study, electric conductivity, high temperature, hyperbaric pressure, phase transition, Tellurium compounds
 Zusammenfassung: CaCu3Mn2Te2O12 was synthesized using high-temperature and high-pressure conditions. The compound possesses an A- and B site ordered quadruple perovskite structure in Pn3̅ symmetry with the charge combination of CaCu32+Mn22+Te26+O12. A ferrimagnetic phase transition originating from the antiferromagnetic interaction between A′ site Cu2+ and B site Mn2+ ions is found to occur at TC ≈ 100 K. CaCu3Mn2Te2O12 also shows insulating electric conductivity. Optical measurement demonstrates the energy bandgap to be about 1.9 eV, in agreement with the high B site degree of chemical order between Mn2+ and Te6+. The first-principles theoretical calculations confirm the Cu2+(↓)-Mn2+(↑) ferrimagnetic coupling as well as the insulating nature with an up-spin direct bandgap. The current CaCu3Mn2Te2O12 provides an intriguing example of an intrinsic ferrimagnetic insulator with promising applications in advanced spintronic devices. © 2023 American Chemical Society.

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Sprache(n): eng - English
 Datum: 2023-12-132023-12-13
 Publikationsstatus: Erschienen
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 Art der Begutachtung: -
 Identifikatoren: DOI: 10.1021/acs.inorgchem.3c03288
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Titel: Inorganic Chemistry
  Kurztitel : Inorg. Chem.
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: Washington, DC : American Chemical Society
Seiten: - Band / Heft: 62 (51) Artikelnummer: - Start- / Endseite: 21233 - 21239 Identifikator: ISSN: 0020-1669
CoNE: https://pure.mpg.de/cone/journals/resource/0020-1669