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Chemical Partition of the Radiative Decay Rate of Luminescence of Europium Complexes

机译:铕配合物发光辐射衰减率的化学分区

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The spontaneous emission coefficient, Arad, a global molecular property, is one of the most important quantities related to the luminescence of complexes of lanthanide ions. In this work, by suitable algebraic transformations of the matrices involved, we introduce a partition that allows us to compute, for the first time, the individual effects of each ligand on Arad, a property of the molecule as a whole. Such a chemical partition thus opens possibilities for the comprehension of the role of each of the ligands and their interactions on the luminescence of europium coordination compounds. As an example, we applied the chemical partition to the case of repeating non-ionic ligand ternary complexes of europium(III) with DBM, TTA, and BTFA, showing that it allowed us to correctly order, in an a priori manner, the non-obvious pair combinations of non-ionic ligands that led to mixed-ligand compounds with larger values of Arad.
机译:自发排放系数,Arad,全局分子特性是与镧系元素的复合物的发光有关的最重要的量之一。在这项工作中,通过所涉及的基质的合适代数转化,我们引入了一种允许我们第一次计算每个配体在Arad上的单个效果的分区作为整体分子的性质。因此,这种化学分区打开了理解每种配体的作用的可能性及其对铕配位化合物的发光的相互作用。作为一个例子,我们将化学分区应用于重复用DBM,TTA和BTFA重复非离子配体三元复合物(III)的情况,表明我们允许我们以先验方式正确地订购非 - 导致具有较大ArAD值的混合配体化合物的非离子配体的影响组合。

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