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配体到金属电荷转移态在发光铕配合物的非三重态敏化中的作用。

Role of ligand-to-metal charge transfer state in nontriplet photosensitization of luminescent europium complex.

机构信息

Department of Chemistry, Renmin University of China, Beijing 100872, PR China.

出版信息

J Phys Chem A. 2010 Apr 8;114(13):4494-500. doi: 10.1021/jp9103189.

Abstract

We have investigated, by means of steady-state and time-resolved optical spectroscopies, the excited-state dynamics of the luminescent europium complex Eu(III)(tta)(3)dpbt (tta = henoyltrifluoroacetonate; dbpt = 2-(N,N-diethylanilin-4-yl)-4,6-bis(3,5-dimethylpyrazol-1-yl)-1,3,5-triazine) with Gd(III)(tta)(3)dpbt and Tb(III)(tta)(3)dpbt as the reference complexes that cannot be photosensitized. In the Eu(III)(tta)(3)dpbt complex, the ligand dpbt exhibited biphasic fluorescence decay kinetics; the faster component (decay time constant, 8.5 ps) is ascribed to the rapid conversion of the lowest-lying singlet excited state of dpbt (S(1) or (1)dpbt*) to a ligand-to-metal charge transfer singlet state of the complex ((1)LMCT*), whereas the slower one (1.8 ns) is shown by temperature-dependent luminescence spectroscopy to be delayed fluorescence due to the LMCT-to-dpbt backward energy transfer and represents the time scale of efficient excitation energy flow from the (1)LMCT* state to the (5)D(1) state of Eu(III). On the basis of the spectroscopic results of the Ln(III)(tta)(3)dpbt complexes (Ln = Eu, Gd, and Tb), the crucial role of the (1)LMCT* state in photosensitization of the Eu(III)(tta)(3)dpbt complex is established, and a LMCT-mediated nontriplet sensitization mechanism is proposed, which is advantageous in high efficiency and low excitation photon energy as well as in low susceptibility against oxygen quenching.

摘要

我们通过稳态和时间分辨光谱学研究了发光铕配合物 Eu(III)(tta)(3)dpbt(tta = 苯甲酰三氟丙酮;dbpt = 2-(N,N-二乙基苯胺-4-基)-4,6-双(3,5-二甲基吡唑-1-基)-1,3,5-三嗪)的激发态动力学,其中 Gd(III)(tta)(3)dpbt 和 Tb(III)(tta)(3)dpbt 作为不能被敏化的参考配合物。在 Eu(III)(tta)(3)dpbt 配合物中,配体 dpbt 表现出双相荧光衰减动力学;较快的组分(衰减时间常数,8.5 ps)归因于 dpbt 的最低单线态激发态(S(1)或 (1)dpbt*)到配合物的配体到金属电荷转移单线态((1)LMCT*)的快速转换,而较慢的一个(1.8 ns)通过温度依赖的发光光谱显示为延迟荧光,由于 LMCT 到 dpbt 的反向能量转移,代表了从 (1)LMCT* 态到 Eu(III)的 (5)D(1)态的有效激发能量流动的时间尺度。基于 Ln(III)(tta)(3)dpbt 配合物(Ln = Eu、Gd 和 Tb)的光谱结果,确立了 (1)LMCT* 态在 Eu(III)(tta)(3)dpbt 配合物敏化中的关键作用,并提出了一种 LMCT 介导的非三重态敏化机制,该机制在高效率、低激发光子能量以及低对氧猝灭的敏感性方面具有优势。

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