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首页> 外文期刊>Journal of the American Chemical Society >Understanding the Quenching Effects of Aromatic C-H- and C-D- Oscillators in Near-IR Lanthanoid Luminescence
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Understanding the Quenching Effects of Aromatic C-H- and C-D- Oscillators in Near-IR Lanthanoid Luminescence

机译:了解芳烃C-H-和C-D-振荡器在近红外镧系元素发光中的猝灭作用

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摘要

Several series of selectively deuterated 2,2'- bipyridine-based cryptates with the near-IR emissive lanthanoids Pr, Nd, Er, and Yb are reported. The structural and luminescence properties of these complexes have been comprehensively investigated. A combination of experimental techniques (X-ray crystallography, lanthanoid-induced NMR shift analysis, luminescence, vibrational near-IR absorption) and theoretical concepts has been applied with a focus on nonradiative deactivation through multiphonon relaxation of lanthanoid excited states by aromatic, high-energy C-(H/D) oscillators. It is shown that the characteristics for the overtones of these vibrational modes deviate substantially from harmonic oscillators and that anharmonicity within a local-mode Morse model is an essential parameter for any accurate description. The spectral overlap integrals (SOIs) of lanthanoid electronic states with aromatic C-(H/D) overtones are evaluated quantitatively for different lanthanoid/oscillator combinations and the implications for luminescence enhancement through deuteration is discussed. Simple Gaussian functions are proposed as appropriate mathematical forms for the empirical approximation of SOIs.
机译:报道了几个系列的具有近红外发射镧系元素Pr,Nd,Er和Yb的选择性氘代的2,2'-联吡啶基加密物。这些配合物的结构和发光性能已得到全面研究。实验技术(X射线晶体学,镧系元素诱导的NMR位移分析,发光,振动近红外吸收)和理论概念相结合,重点研究了通过芳香族,高能级的镧系元素激发态的多声子弛豫来实现非辐射失活。能量C-(H / D)振荡器。结果表明,这些振动模式的泛音特性与谐波振荡器有很大的出入,对于任何精确的描述,局部模式莫尔斯模型内的非谐性都是必不可少的参数。对于不同的镧系元素/振荡器组合,定量评估了具有芳族C-(H / D)泛音的镧系元素电子态的光谱重叠积分(SOI),并讨论了通过氘增强发光的意义。提出了简单的高斯函数作为SOI经验近似的适当数学形式。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第39期|p.16413-16423|共11页
  • 作者单位

    Inorganic Chemistry I, Department of Chemistry and Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany;

    Inorganic Chemistry I, Department of Chemistry and Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany;

    Inorganic Chemistry I, Department of Chemistry and Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany;

    Inorganic Chemistry I, Department of Chemistry and Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany;

    Inorganic Chemistry I, Department of Chemistry and Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany;

    Inorganic Chemistry I, Department of Chemistry and Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany;

    Departamento de Quimica Fundamental, Universidade da Coruna, Campus da Zapateira-Rua da Fraga 10, 15008 A Corufia, Spain;

    Inorganic Chemistry I, Department of Chemistry and Biochemistry, Ruhr-University Bochum, 44780 Bochum, Germany;

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