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Theoretical studies of the spin Hamiltonian parameters for the two tetragonal Cu²⁺ centers in the calcined catalysts CuO-ZnO

机译:煅烧催化剂CuO-ZnO中两个四方Cu²⁺中心自旋哈密顿量参数的理论研究

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摘要

The spin Hamiltonian parameters for the two Cu²⁺ centers A1 and A2 in the calcined catalysts CuO-ZnO are theoretically investigated using the high order perturbation formulas of these parameters for a 3d⁹ ion in tetragonally elongated octahedra. In the above formulas, the tetragonal field parameters Ds and Dt are determined from the superposition model, by considering the relative axial elongation of the oxygen octahedron around the Cu²⁺ due to the Jahn-Teller effect. Based on the calculations, the relative elongation ratios of about 5% and 3% are obtained for the tetragonal Cu²⁺ centers A1 and A2, respectively. The theoretical spin Hamiltonian parameters are in good agreement with the observed values for both systems. The larger axial elongation in center A1 is ascribed to the more significant low symmetrical (tetragonal) distortion of the Jahn-Teller effect. The local structures characterized by the above axial elongations are discussed.
机译:从煅烧催化剂CuO-ZnO中两个Cu 2+中心A1和A2的自旋哈密顿量参数,对四方伸长的八面体中的3d +离子使用这些参数的高阶扰动公式进行了理论研究。在上述公式中,通过考虑Jahn-Teller效应,考虑到围绕Cu 2+的氧八面体的相对轴向伸长,由叠加模型确定了四边形场参数Ds和Dt。根据这些计算,对于四方Cu 2+中心A1和A2,分别获得了约5%和3%的相对伸长率。理论上的自旋哈密顿量参数与两个系统的观测值高度吻合。中心A1处较大的轴向伸长归因于Jahn-Teller效应的更明显的低对称(四边形)变形。讨论了以上述轴向伸长为特征的局部结构。

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