| Literature DB >> 28026173 |
Jongho Park1,2, Kimoon Lee3, Seung Yong Lee1,2, Chandani N Nandadasa4, Sungho Kim2, Kyu Hyoung Lee5, Young Hee Lee1,2, Hideo Hosono6, Seong-Gon Kim4, Sung Wng Kim1.
Abstract
We have synthesized a single crystalline Y2C 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 Y2C electride containing a magnetically easy axis. It is clarified from the theoretical calculations that the anisotropic nature of the Y2C electride originates from strongly localized anionic electrons with an inherent magnetic anisotropy in the interlayer spaces.Entities:
Year: 2017 PMID: 28026173 DOI: 10.1021/jacs.6b11950
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419