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首页> 外文期刊>The journal of physics and chemistry of solids >Electronic and magnetic properties of new half-metallic ferromagnetic rutile Ti1-x-yVxNiyO2 (x = y=6.25%): A first-principles study
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Electronic and magnetic properties of new half-metallic ferromagnetic rutile Ti1-x-yVxNiyO2 (x = y=6.25%): A first-principles study

机译:新的半金属铁磁金红石Ti1-x-Yvxniyo2的电子和磁性特性(x = y = 6.25%):一项原则研究

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摘要

We report electronic and magnetic properties of the new half-metallic ferromagnetic co-doped system of rutile Ti1-x-yVxNiyO2 (x = y = 6.25%). The semiconductor ferromagnetic doped system of rutile Ti1-x-yVxO2 (x = 6.25%) system is revisited as the reference. The plane-wave GGA + U method was used after choosing U at Ti 3d site in the fully-optimized rutile TiO2. The co-doped system exhibits the total magnetic moment of 1.41 mu(B)/ Ni atom localized at the V and Ni sites which is significantly higher than that of the doped system. Interestingly, the local ferrimagnetism centered at the cations of V4+ and Ni3+ is found with the minor contribution from their nearest-neighboring O-2-ions bound via the p-d hybridization. The Ni3+ ion induces the half-metallic behavior by introducing spin-up hole O 2p states above the Fermi energy level. Finally, the GGA + U provides accurate energy positions of sub-V 3d and Ni 3d states under the elongation Jahn-Teller distortion at the VO6 and NiO6 octahedra. Our result shows the significant effect of Ni3+ ion in modifying the electronic and magnetic properties of the rutile Ti1-x-yVxO2 system. This study presents the essentials properties which can be a guide for experiments.
机译:我们报告了新型半金属铁磁共磁共掺杂系统的金红石Ti1-X-YVXNIYO2(X = Y = 6.25%)的电子和磁性。 Rutile Ti1-X-YVXO2(X = 6.25%)系统的半导体铁磁性掺杂系统被重新访问作为参考。在完全优化的金红石TiO2中选择u之后使用平面波GGA + U方法。共掺杂的系统显示在V和Ni位点的总磁矩为1.41μm(b)/ ni原子,其显着高于掺杂系统。有趣的是,本地亚铁磁性中心在V4 +和的Ni3 +的阳离子被发现与从它们的最近邻经由p d杂交结合的O-2离子的贡献很小。 Ni3 +离子通过在FERMI能量水平上方引入旋转孔O 2P状态来引起半金属行为。最后,GGA + U在VO6和NIO6 Octahedra的伸长率Jahn-Talker失真下提供Sub-V 3D和NI 3D状态的精确能量位置。我们的结果表明了Ni3 +离子在改变金红石Ti1-X-YVXO2系统的电子和磁性时的显着影响。本研究介绍了可以成为实验指南的基本属性。

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