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理论确定镧系(III)配合物中的能量转移过程和对称性的影响:方法学考虑。

Theoretical Determination of Energy Transfer Processes and Influence of Symmetry in Lanthanide(III) Complexes: Methodological Considerations.

机构信息

Relativistic Molecular Physics (ReMoPh) Group, Ph.D. Program in Molecular Physical Chemistry , Universidad Andrés Bello , Av. República 275 , Santiago 8370146 , Chile.

Center of Applied Nanosciences (CANS), Facultad de Ciencias Exactas , Universidad Andrés Bello , Av. República 275 , Santiago 8370146 , Chile.

出版信息

Inorg Chem. 2018 May 7;57(9):5120-5132. doi: 10.1021/acs.inorgchem.8b00159. Epub 2018 Apr 25.

Abstract

This work presents a theoretical protocol to analyze the symmetry effect on the allowed character of the transitions and to estimate the probability of energy transfer in lanthanide(III) complexes. For this purpose, a complete study was performed based on the multireference CASSCF/PT2 technique along with TDDFT, to build the energy level diagrams and determine the spectral overlap integrals, respectively. This approach was applied on a series of LnIII complexes, viz. [LnCl(DMF)(Dpq)]/[Ln(NO)(DMF)(Dpq)], where Ln = Sm, Tb, Er/Eu, Nd and dpq = dipyridoquinoxaline, synthesized and characterized by Patra et al. ( Dalton Trans. 2015 , 44 ( 46 ), 19844 - 19855 ; CrystEngComm 2016 , 18 ( 23 ), 4313 - 4322 ; Inorg. Chim. Acta 2016 , 451 , 73 - 81 ). A fragmentation scheme was applied where both the ligand and the lanthanide fragments were treated separately but at the same level of theory. The symmetry analysis only partially reproduced the expected results, and a more detailed analysis of the crystal field became necessary. On the other hand, the most probable energy transfer pathways that take place in the complexes were elucidated from the energy gaps between the ligand-localized triplet state and the emitting levels of the lanthanide fragments. These gaps, which are related to the energy transfer rate, properly reproduced the trend reported experimentally for the best and worst yields. Finally, the spectral overlap integral was calculated from the emission spectra of the dpq ligand and the absorption spectra of the lanthanide fragment. The obtained values are in good agreement with the quantum yields calculated for the systems. The most remarkable aspect of this protocol was its ability to explain the emission and nonemission of the studied compounds.

摘要

这项工作提出了一种理论方案,用于分析对称性对跃迁允许特性的影响,并估计镧系(III)配合物中能量转移的概率。为此,我们基于多参考 CASSCF/PT2 技术并结合 TDDFT,分别进行了全面研究,以构建能级图和确定光谱重叠积分。该方法应用于一系列 LnIII 配合物,即 [LnCl(DMF)(Dpq)]/[Ln(NO)(DMF)(Dpq)],其中 Ln = Sm、Tb、Er/Eu、Nd 和 dpq = 二吡啶并喹喔啉,由 Patra 等人合成并表征。( Dalton Trans. 2015 ,44(46),19844-19855;CrystEngComm 2016 ,18(23),4313-4322;Inorg. Chim. Acta 2016 ,451 ,73-81)。我们应用了一种碎片方案,其中配体和镧系元素片段分别进行处理,但在相同的理论水平上。对称性分析仅部分重现了预期的结果,因此需要对晶体场进行更详细的分析。另一方面,从配体局域三重态和镧系元素片段的发射能级之间的能隙阐明了在配合物中发生的最可能的能量转移途径。这些与能量转移速率有关的能隙,适当地重现了实验报告的最佳和最差产率的趋势。最后,从 dpq 配体的发射光谱和镧系元素片段的吸收光谱计算了光谱重叠积分。得到的值与为系统计算的量子产率吻合良好。该方案最显著的特点是它能够解释所研究化合物的发射和非发射。

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