Wu Min, Tse John S, Pan Yuanming
College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, 310014, China.
Department of Physics and Engineering Physics, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5E2 Canada.
Sci Rep. 2016 Feb 12;6:21637. doi: 10.1038/srep21637.
Greigite (Fe3S4) is a ferrimagnetic mineral with vital functions in both the bio-geochemical cycle and novel technological applications. However, the ground state electronic structure of this material has not been fully characterized by either experiment or theory. In the present study, ab initio calculations using the hybrid functional method have been performed to investigate the electronic structure and magnetic properties. It is found that the cubic structure observed under ambient temperature is a half metal and is metastable. A more stable monoclinic structure slightly distorted from the cubic form is found. The structural distortion is induced by charge ordering and associated with a metal-to-insulator transition, resulting in a semiconductive ground state with a bandgap of ~0.8 eV and a magnetic moment of 4 μB per formula unit. The results predict, similar to the magnetite (Fe3O4), a Verwey transition may exist in greigite, although it has not yet been observed experimentally.
硫复铁矿(Fe3S4)是一种亚铁磁性矿物,在生物地球化学循环和新型技术应用中都具有重要作用。然而,这种材料的基态电子结构尚未通过实验或理论得到充分表征。在本研究中,使用杂化泛函方法进行了从头算计算,以研究其电子结构和磁性。研究发现,在环境温度下观察到的立方结构是一种半金属且是亚稳态的。还发现了一种从立方形式略微畸变的更稳定的单斜结构。结构畸变是由电荷有序化引起的,并与金属 - 绝缘体转变相关,导致形成一种具有约0.8电子伏特带隙和每个化学式单位4玻尔磁子磁矩的半导体基态。结果预测,与磁铁矿(Fe3O4)类似,硫复铁矿中可能存在韦尔维转变,尽管尚未通过实验观察到。