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Energy Transfer from Antenna Ligand to Europium(Ⅲ) Followed Using Ultrafast Optical and X-ray Spectroscopy

机译:从天线配体到铕(Ⅲ)的能量转移,然后使用超速光学和X射线光谱

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摘要

A series of highly luminescent europium(III) complexes which exhibit photoluminescence from the Eu(III) center following energy transfer from the UV absorbing organic sensitizer have been investigated using a combination of ultrafast optical transient absorption and Eu L3 X-ray transient absorption techniques. We have previously demonstrated that the latter can be used as a signature of 4f-4f excitation responsible for the photoluminescence in these Eu(III) coordination complexes, but the long time scale of the earlier measurements did not allow direct observation of the ligand-to-metal energy transfer step, preventing a determination of the sensitization mechanism. Here, we provide the first direct experimental verification that Dexter electron exchange from the ligand triplet state is the dominant energy transfer mechanism in these photoluminescent systems. Moreover, the optical transient absorption results obtained herein imply that energy transfer for all three compounds has near unity yield, regardless of differences in the sensitization efficiencies, suggesting that the variations in the sensitization efficiencies are determined almost entirely by differences in the ligand-centered intersystem crossing rates. The implications for the rational design of more effective photoluminescent lanthanide complexes are discussed.
机译:使用超速光学瞬态吸收和EU L3 X射线瞬态吸收技术的组合研究了从UU吸收有机敏化剂的能量转移后,从EU(III)中心,从EU(III)中心的光致发光的一系列高发光铕(III)复合物。我们先前已经证明,后者可以用作负责这些EU(III)协调复合物中的光致发光的4F-4F激发的标志,但早期测量的长时间规模不允许直接观察配体 - - 预防敏化机制的测量步骤。这里,我们提供了来自配体三重态状态的德克斯特电子交换的第一直接实验验证是这些光致发光系统中的主要能量转移机制。此外,本文获得的光学瞬态吸收结果意味着所有三种化合物的能量转移具有近乎统一的产量,无论致敏效率的差异如何,致敏效率的变化几乎完全由配体中心的界面系统的差异确定过时。讨论了对更有效的光致发光镧系元络合物的合理设计的影响。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第28期|11071-11081|共11页
  • 作者单位

    Univ Calif Berkeley Dept Chem Berkeley CA 94720 USA|Lawrence Berkeley Natl Lab Div Chem Sci Berkeley CA 94720 USA;

    Univ Calif Berkeley Dept Chem Berkeley CA 94720 USA;

    Argonne Natl Lab Chem Sci & Engn 9700 S Cass Ave Argonne IL 60439 USA;

    Argonne Natl Lab Chem Sci & Engn 9700 S Cass Ave Argonne IL 60439 USA;

    Univ Queensland Sch Chem & Mol Biosci Brisbane Qld 4072 Australia;

    Univ Calif Berkeley Dept Chem Berkeley CA 94720 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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