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First-principles study on the electronic structure and optical properties of Mn-doped NaNbO3

机译:Mn掺杂NaNbO3的电子结构和光学性质的第一性原理研究

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The electronic structure and optical properties of pure and Mn doped NaNbO3 are investigated employing the first principle method based on the density functional theory. The results indicate that the hybridization of Nb 4d and O 2p states play an important role on the piezoelectricity of NaNbO3. The calculated formation energies show that Mn prefers to built into Na sites. Moreover, Mn doping leads to the redistribution of charge density and a red shift of absorption to visible light region in the absorption edge.
机译:基于密度泛函理论,采用第一原理方法研究了纯锰掺杂的NaNbO3的电子结构和光学性质。结果表明,Nb 4d和O 2p态的杂化对NaNbO3的压电性起重要作用。计算得出的形成能表明,Mn更倾向于嵌入Na位点。而且,Mn掺杂导致电荷密度的重新分布以及吸收向吸收边缘中的可见光区域的红移。

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