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Strong Localization of Anionic Electrons at Interlayer for Electrical and Magnetic Anisotropy in Two-Dimensional Y<sub>2</sub>C Electride
98
Citations
18
References
2016
Year
We have synthesized a single crystalline Y<sub>2</sub>C electride of centimeter-scale by floating-zone method and successfully characterized its anisotropic electrical and magnetic properties. In-plane resistivity upturn at low temperature together with anisotropic behavior of negative magnetoresistance is ascribed to the stronger suppression of spin fluctuation along in-plane than that along the c-axis, verifying the existence of magnetic moments preferred for the c-axis. A superior magnetic moment along the c-axis to that along the in-plane direction strongly demonstrates the anisotropic magnetism of Y<sub>2</sub>C electride containing a magnetically easy axis. It is clarified from the theoretical calculations that the anisotropic nature of the Y<sub>2</sub>C electride originates from strongly localized anionic electrons with an inherent magnetic anisotropy in the interlayer spaces.
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