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Promising electronic structure of double perovskite Sr2TiMoO6: Spin-polarized DFT+U approach

机译:有前途的电子结构双钙钛矿SR2TIMOO6:旋转极化DFT + U接近

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The electronic structure of double perovskite Sr2TiMo0O have been systematically investigated using first principle. The spin-polarized electronic band structure and the density of states reveal that the spin-up channel has metal behavior while the spin-down channel expresses semiconductor behavior with direct band gap of 2.92 eV. For valence band, the 0-2p states is the mainly contributor for both spin-up and spin-down channels above -5.3eV. Between -7.7eV to -5.3eV, valence band is formed by 0-2p states with admixture of Mo-4d states. For conduction band, from range 4 eV to 7.4 eV is mostly formed by Sr-3d. On the other hand, 0-2p, Mo-4d as well as Ti-3d states mainly consists of the conduction band near Fermi energy, so those states need to be more concerned. The spin splitting may lead to unusual thermoelectric transport properties.
机译:通过第一原理系统地研究了双钙钛矿SR2Timo0O的电子结构。旋转极化电子带结构和状态的密度显示旋转通道具有金属行为,而拆卸通道表示具有2.92eV的直接带隙的半导体行为。对于价频段,0-2P状态是旋转和拆卸通道的主要因素-5.3ev。在-7.7ev至-5.3ev之间,价带由0-2p态形成MO-4D状态的混合物。对于传导频带,从范围4eV至7.4eV大多由SR-3D形成。另一方面,0-2P,MO-4D以及TI-3D状态主要由Fermi Energy附近的导带组成,因此这些国家需要更关注。旋转分裂可能导致不寻常的热电传输性能。

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