首页> 外文期刊>The journal of physics and chemistry of solids >Influence of chemical bond length changes on the crystal field strength and 'ligand-metal' charge transfer transitions in Cs2GeF6 doped with Mn4+ and Os4+ ions
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Influence of chemical bond length changes on the crystal field strength and 'ligand-metal' charge transfer transitions in Cs2GeF6 doped with Mn4+ and Os4+ ions

机译:化学键长变化对掺杂Mn4 +和Os4 +离子的Cs2GeF6晶体场强度和“配体-金属”电荷转移跃迁的影响

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摘要

Detailed study of dependence of the crystal field strength 10Dq and lowest charge transfer (CT) energies for different interionic distances in CS2GeF6:Mn4+ and Cs2GeF6:Os4+ crystals is presented. The calculations were performed using the first-principles discrete-variational Dirac-Slater (DV-DS) method. As a result, the functional dependencies of 10Dq and lowest CT energy on the metal-ligand distance R were obtained without any fitting or semiempirical parameters. It was shown that 10Dq depends on R as 1/R-n, with n = 4.0612 and 4.3874 for Cs2GeF6:Mn4+ and Cs2GeF6:Os4+, respectively. Two approximations (linear and quadratic) are obtained for the dependence of the lowest CT energy on R; CT energy decreases when R increases with dE(CT)/dR = -638 and -1080cm(-1)/pm for Cs2GeF6:Mn4+ and Cs2GeF6:Os4+, respectively, if the linear approximation is used. These values can be used for estimations of the lowest CT energies for Mn4+ and Os4+ ions in other hosts with fluorine ligands. Estimations of the electron-vibrational interaction (EVI) constants, Huang-Rhys parameters, and Stokes shifts for all the above-mentioned crystals were performed using the obtained 10Dq and E(CT) functions. (c) 2007 Elsevier Ltd. All rights reserved.
机译:详细研究了CS2GeF6:Mn4 +和Cs2GeF6:Os4 +晶体中不同离子间距下晶体场强10Dq和最低电荷转移(CT)能量的依赖性。使用第一原理离散变量狄拉克-斯莱特(DV-DS)方法进行计算。结果,在没有任何拟合或半经验参数的情况下,获得了10Dq和最低CT能量对金属-配体距离R的函数依赖性。结果表明,10Dq取决于R为1 / R-n,对于Cs2GeF6:Mn4 +和Cs2GeF6:Os4 +,n分别为4.0612和4.3874。对于最低的CT能量对R的依赖性,获得了两个近似值(线性和二次)。如果使用线性近似,则当Cs2GeF6:Mn4 +和Cs2GeF6:Os4 +的R分别随着dE(CT)/ dR = -638和-1080cm(-1)/ pm的增加而增加时,CT能量降低。这些值可用于估计其他具有氟配体的主体中Mn4 +和Os4 +离子的最低CT能量。使用获得的10Dq和E(CT)函数对所有上述晶体的电子振动相互作用(EVI)常数,Huang-Rhys参数和斯托克斯位移进行了估算。 (c)2007 Elsevier Ltd.保留所有权利。

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