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Europium Luminescence: Electronic Densities and Superdelocalizabilities for a Unique Adjustment of Theoretical Intensity Parameters

机译:p发光:电子强度和超定域性的理论强度参数的唯一调整

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摘要

We advance the concept that the charge factors of the simple overlap model and the polarizabilities of Judd-Ofelt theory for the luminescence of europium complexes can be effectively and uniquely modeled by perturbation theory on the semiempirical electronic wave function of the complex. With only three adjustable constants, we introduce expressions that relate: (i) the charge factors to electronic densities, and (ii) the polarizabilities to superdelocalizabilities that we derived specifically for this purpose. The three constants are then adjusted iteratively until the calculated intensity parameters, corresponding to the 5D0→7F2 and 5D0→7F4 transitions, converge to the experimentally determined ones. This adjustment yields a single unique set of only three constants per complex and semiempirical model used. From these constants, we then define a binary outcome acceptance attribute for the adjustment, and show that when the adjustment is acceptable, the predicted geometry is, in average, closer to the experimental one. An important consequence is that the terms of the intensity parameters related to dynamic coupling and electric dipole mechanisms will be unique. Hence, the important energy transfer rates will also be unique, leading to a single predicted intensity parameter for the 5D0→7F6 transition.
机译:我们提出了一个概念,即简单的重叠模型的电荷因数和Judd-Ofelt理论的极化率对于complex络合物的发光可以通过微扰理论对络合物的半经验电子波函数进行有效而独特的建模。仅使用三个可调常数,我们引入与以下内容相关的表达式:(i)电子密度的电荷因子,和(ii)为此目的专门推导的超定域性的极化率。然后反复调整这三个常数,直到计算出的强度参数对应于 5 D0→ 7 F2和 5 D0→ 7 F4过渡,收敛到实验确定的过渡。这种调整产生了一个唯一的集合,每个使用的复数和半经验模型只有三个常数。然后,根据这些常数,为调整定义一个二进制结果接受属性,并显示出当调整可接受时,预测的几何形状平均而言更接近于实验形状。一个重要的结果是,与动态耦合和电偶极子机制有关的强度参数的术语将是唯一的。因此,重要的能量传递速率也将是唯一的,从而导致 5 D0→ 7 F6转换的单个预测强度参数。

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