Estimation of the covalent binding parameters and the ground state wave functions in complexes doped with vanadyl ion

Indrajeet Mishra
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Abstract

In octahedral complexes doped with transition metal ions the Steven’s model has been used for computing the covalent binding parameters. This model is further used for interpreting the g-factors in various single crystals containing paramagnetic VO2+ ion. Theoretical expressions were given for the g-factors of Vanadyl ions in the crystalline field of cubic nature with components of tetragonal symmetry. The g-factors have been given in terms of covalent binding parameters || and taking into account the tetragonal crystalline field and covalent binding. Computations show that should be less than 0.064 in order to fit the experimental g-values. Using crystal field theory, the ground state wave functions (GSWF) for VO2+ ions in different single crystals has been determined. It is found that GSWF is in dxy state with slight admixture of excited states dx2-y2, dxz and dyz. The hyperfine interaction parameter P and Fermi contact term X have also been calculated.
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钒基离子掺杂配合物中共价结合参数和基态波函数的估计
在掺杂过渡金属离子的八面体配合物中,Steven模型被用于计算共价结合参数。该模型进一步用于解释含顺磁性VO2+离子的各种单晶中的g因子。给出了钒基离子在具有四方对称分量的立方晶体场中g因子的理论表达式。考虑到四方晶场和共价结合,以共价结合参数的形式给出了g因子。计算表明,为了与实验g值拟合,应小于0.064。利用晶体场理论,确定了不同单晶中VO2+离子的基态波函数(GSWF)。发现GSWF为dxy态,激发态dx2-y2、dxz和dyz有轻微混合。计算了超精细相互作用参数P和费米接触项X。
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