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发光铕(III)和钆(III)三联吡啶穴合物:取代基效应的实验与理论研究

Luminescent Eu(III) and Gd(III) trisbipyridine cryptates: experimental and theoretical study of the substituent effects.

作者信息

Guillaumont Dominique, Bazin Hervé, Benech Jean-Marc, Boyer Marion, Mathis Gérard

机构信息

Direction de l'Energie Nucléaire, Commissariat a l'Energie Atomique, Valrhô, BP 17171, 30207 Bagnols/Cèze, France.

出版信息

Chemphyschem. 2007 Feb 19;8(3):480-8. doi: 10.1002/cphc.200600669.

DOI:10.1002/cphc.200600669
PMID:17226873
Abstract

Synthesis, absorption spectra and luminescebce properties of a series of lanthanide trisbipyridine cryptates Ln within R-Bpy x R-Bpy x R-Bpy, where Ln = Eu, Gd and R = H, COOH, COOCH3, CONH(CH2)2NH2 are described. Comparison of the unsubstituted parent compound with the substituted compounds shows that bipyridine substitution doesn't alter significantly the photophysical properties of the lanthanide cryptate. The absorption maximum is slightly red-shifted when three bipyridines are substituted, whereas substituting one bipyridines has a negligible effect on the absorption spectra. The experimental triplet state energy is between 21600 and 22 100 cm(-1) for the series of compounds and the luminescence lifetimes at 77 K are between 0.5 and 0.8 ms in HO2 and equal to 1.7 ms in D2O. The experimental characterizations are completed by DFT and TD-DFT calculations to assess the ability of these approaches to predict absorption maxima, triplet state energies and structural parameters of lanthanide cryptates and to characterize the electronic structure of the excited states. The calculations on the unsubstituted parent and substituted compounds show that absorption maxima and lowest 3pipi* triplet state energies can be accurately determined from density functional theory (DFT) and time-dependent (TD) DFT calculations.

摘要

描述了一系列镧系三联吡啶穴合物Ln(其中Ln = Eu、Gd,R = H、COOH、COOCH3、CONH(CH2)2NH2)在R-Bpy x R-Bpy x R-Bpy中的合成、吸收光谱和发光性质。将未取代的母体化合物与取代化合物进行比较表明,联吡啶取代不会显著改变镧系穴合物的光物理性质。当三个联吡啶被取代时,最大吸收峰略有红移,而取代一个联吡啶对吸收光谱的影响可忽略不计。该系列化合物的实验三线态能量在21600至22100 cm(-1)之间,在77 K时,在H2O中的发光寿命在0.5至0.8 ms之间,在D2O中等于1.7 ms。通过密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)计算完成了实验表征,以评估这些方法预测镧系穴合物的吸收最大值、三线态能量和结构参数以及表征激发态电子结构的能力。对未取代的母体化合物和取代化合物的计算表明,吸收最大值和最低的3ππ*三线态能量可以从密度泛函理论(DFT)和含时(TD)DFT计算中准确确定。

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