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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ab Initio Study of Energy Transfer Pathways in Dinuclear Lanthanide Complex of Europium(III). and Terbium(III) Ions
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Ab Initio Study of Energy Transfer Pathways in Dinuclear Lanthanide Complex of Europium(III). and Terbium(III) Ions

机译:Di(III)双核镧系元素络合物能量转移途径的从头算研究。和Ter(III)离子

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An ab initio XMCQDPT(2)/CASSCF study of energy transfer processes in the dinuclear lanthanide complex [(Acac)(3)Eu(mu-Bpym)Tb(Acac)(3)] (Acac is acetylacetonate, and Bpym is 2,2'-bipyrimidine) and a corresponding computational procedure are presented. Because ligands in lanthanide complexes weakly interact with each other, the large dinuclear complex bearing seven organic ligands is divided into fragments that reproduce the electrostatic effects of the ions on the electronic and geometrical structure of the ligands. The multireference XMCQDPT(2)/CASSCF approach is directly applied to these relatively small fragments with reasonable computational cost. The calculated energies of the singlet and triplet excited states agree well with the experiment. Based on the calculated energies, the energy level diagrams of the complex are constructed and intramolecular energy transfer channels are determined.
机译:从头开始XMCQDPT(2)/ CASSCF研究双核镧系元素络合物[(Acac)(3)Eu(mu-Bpym)Tb(Acac)(3)]中的能量转移过程(Acac是乙酰丙酮化物,Bpym是2介绍了2'-联嘧啶)和相应的计算程序。由于镧系元素络合物中的配体彼此之间弱相互作用,因此带有7个有机配体的大双核络合物被分为多个片段,这些片段可再现离子对配体的电子和几何结构的静电作用。多引用XMCQDPT(2)/ CASSCF方法直接以合理的计算成本应用于这些较小的片段。单线态和三线态激发态的计算能量与实验非常吻合。基于计算出的能量,构建配合物的能级图,并确定分子内的能量传递通道。

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