Wen-Chen Zheng, Xiao-Xuan Wu, Ying-Juan Fan
Department of Material Science, Sichuan University, Chengdu 610064, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2007 Jan;66(1):102-5. doi: 10.1016/j.saa.2006.02.030. Epub 2006 Feb 28.
The EPR parameters (zero-field splitting D and g factors g parallel, g perpendicular) of Mn5+ -doped Li3PO4 and Li3VO4 crystals are calculated from the complete high-order perturbation formulas based on a molecular orbital scheme for a 3d2 ion in tetragonal MX4 clusters. These formulas include not only the contribution coming from crystal-field excitations, but also that arising from charge-transfer excitations (which is discarded in crystal field theory). The calculated results are in reasonable agreement with the observed values. The contributions to EPR parameters coming from the charge-transfer excitations are comparable with those arising from the crystal-field excitations. It appears that for a high valence state 3dn ion in crystals, the reasonable explanations of EPR parameters should take the contributions due to both crystal-field and charge-transfer excitations into account.
基于四方MX4簇中3d2离子的分子轨道方案,从完整的高阶微扰公式计算了Mn5+掺杂的Li3PO4和Li3VO4晶体的EPR参数(零场分裂D和g因子g平行、g垂直)。这些公式不仅包括来自晶体场激发的贡献,还包括电荷转移激发产生的贡献(这在晶体场理论中被忽略)。计算结果与观测值合理吻合。电荷转移激发对EPR参数的贡献与晶体场激发产生的贡献相当。看来,对于晶体中的高价态3dn离子,对EPR参数的合理解释应同时考虑晶体场和电荷转移激发的贡献。