首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Characterization of electronic transition energies and trigonal distortion of the (FeO6)(9-) coordination complex in the Al2O3 : Fe3+ system: A simple method for transition-metal ions in a trigonal ligand field
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Characterization of electronic transition energies and trigonal distortion of the (FeO6)(9-) coordination complex in the Al2O3 : Fe3+ system: A simple method for transition-metal ions in a trigonal ligand field

机译:Al2O3:Fe3 +系统中(FeO6)(9-)配位络合物的电子跃迁能和三角畸变的表征:三角配体场中过渡金属离子的一种简单方法

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摘要

A theoretical method for studying the inter-relationships between electronic and molecular structure has been proposed on the basis of the complete energy matrices of electron-electron repulsion, the ligand field, and the spin-orbit coupling for the d(5) configuration ion in a trigonal ligand field. As an application, the local distortion structure and temperature dependence of zero-field splitting for Fe3+ ions in the Al2O3: Fe3+ system have been investigated. Our results indicate that the local lattice structure of the (FeO6)(9-) octahedron in the Al2O3: Fe3+ system has an elongated distortion and the value of distortion is associated with the temperature. The elongated distortion may be attributed to the facts that the Fe3+ ion has an obviously larger ionic radius than the Al3+ ion and the Fe3+ ion will push the two oxygen triangles upward and downward, respectively, along the 3-fold axis. By diagonalizing the complete energy matrices, we found that the theoretical results of electronic transition energies and EPR spectra for Fe3+ ions in the Al2O3: Fe3+ system are in good agreement with the experimental findings. Moreover, to understand the detailed physical and chemical properties of the Al2O3, the theoretical values of the zero-field splitting parameters and the corresponding distortion parameters in the range 50 K <= T <= 250 K are reported first.
机译:基于电子-电子排斥的完整能量矩阵,配体场和d(5)构型离子的自旋-轨道耦合,提出了一种研究电子与分子结构之间相互关系的理论方法。一个三角配体场。作为一种应用,研究了Al2O3:Fe3 +系统中Fe3 +离子的局部畸变结构和零场分裂的温度依赖性。我们的结果表明,Al2O3:Fe3 +系统中(FeO6)(9-)八面体的局部晶格结构具有较长的畸变,并且畸变的值与温度有关。伸长的变形可以归因于以下事实:Fe 3+离子具有明显比Al3 +离子更大的离子半径,并且Fe3 +离子将分别沿3倍轴向上和向下推动两个氧三角形。通过对角化完整的能量矩阵,我们发现Al2O3:Fe3 +系统中Fe3 +离子的电子跃迁能和EPR谱的理论结果与实验结果非常吻合。此外,为了了解Al2O3的详细物理和化学特性,首先报告了零场分裂参数的理论值和相应的畸变参数,其范围为50 K <= T <= 250K。

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