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Atomic structure of manganese-doped yttrium orthoaluminate

机译:锰掺杂原铝酸钇的原子结构

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Using hybrid exchange-correlation functional within density functional theory we have performed first-principle total energy calculations of Mn-doped yttrium orthoaluminate (YAlO3). Its equilibrium atomic structure has been predicted through optimization of coordinates of all atoms using a supercell approach. In our research both Mn3+and Mn2+ions have been substituted for the host alumina atom at orthorhombicPbnmunit cell of YAlO3.F-center has been implemented as charge-compensating defect in case, when Mn2+dopant is under study. In this study we thoroughly analyze the atomic displacements in seven nearest to Mn ion coordination spheres. Insertion of isoelectronic substitutional point defect Mn3+leads to modest expansion of distorted oxygen octahedra, while the cage of Y atoms closest to the dopant remains mostly unchanged. Insertion of compensatingF-center in the 1st oxygen coordination sphere breaks the symmetry of YAlO3and heavily distorts the surrounding oxygen octahedron. That is why the Mn2+-F-center bonds is contracted about 32% with respect to reference Mn-O bond of Mn3+-doped orthorhombic YAlO3. Distortion is also well pronounced at Y coordination spheres of Mn2+/YAlO3. The influence of atomic relaxation near the Mn-dopants to the electronic structure of YAlO3is also discussed.
机译:使用密度泛函理论内的混合交换相关泛函,我们对锰掺杂原铝酸钇(YAlO3)进行了第一性原理总能量计算。通过使用超级电池方法优化所有原子的坐标,可以预测其平衡原子结构。在我们的研究中,Mn3 +和Mn2 +离子都被YAlO3的正交Pbnm晶胞中的主体氧化铝原子取代。在研究Mn2 +掺杂剂的情况下,F中心已被实现为电荷补偿缺陷。在这项研究中,我们彻底分析了七个最接近Mn离子配位球的原子位移。等电取代点缺陷Mn3 +的插入导致畸变的氧八面体适度膨胀,而最接近掺杂剂的Y原子的笼子则保持不变。在第一个氧配位球中插入补偿性F中心会破坏YAlO3的对称性,并严重扭曲周围的氧八面体。这就是为什么Mn2 + -F-中心键相对于掺杂Mn3 +的斜方晶YAlO3的参考Mn-O键收缩约32%的原因。在Mn2 + / YAlO3的Y配位球上畸变也很明显。还讨论了Mn掺杂剂附近原子弛豫对YAlO3电子结构的影响。

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