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SYNTHESIS AND NEAR INFRARED LUMINESCENT PROPERTIES OF LANTHANIDE COMPLEXES

机译:镧系元素配合物的合成及近红外发光性能

摘要

In vivo near-infrared (NIR) fluorescence microscopy and imagery is an emerging research area in biology. Organic dyes currently tested for NIR imagery have very severe limitations such as rapid photobleaching. This drastically limits the sample exposure time and/or prevents the experiment to be repeated. Lanthanide complexes have NIR luminescence properties which have strong resistance to photo-bleaching, long luminescence lifetimes and sharp emission bands. In addition, the emission band energies are independent from the experimental condition. All these properties make them the most promising agents for NIR imagery. In this thesis, it was demonstrated that tropolonate ligands can be used as an efficient sensitizer for several luminescent lanthanide cations (Nd, Ho, Er, Tm, Yb) emitting in the NIR. One octadentate ligand was developed to fulfill the complete coordination requirements of lanthanide cations in order to achieve increased stability of the complex to sustain physiological conditions to maximize the protection of the coordinated lanthanide cation against non-radiative deactivation. To study and rationalize the mechanism of ligand to lanthanide of energy transfer, derivatives of tropolone and their corresponding complexes are synthesized. The mechanism of the energy transfer can be used to design lanthanide complexes with controlled properties.
机译:体内近红外(NIR)荧光显微镜和图像是生物学中一个新兴的研究领域。当前用于NIR图像测试的有机染料具有非常严格的限制,例如快速的光漂白。这极大地限制了样品的暴露时间和/或阻止了重复实验。镧系元素络合物具有NIR发光特性,具有很强的抗光漂白性,长发光寿命和清晰的发射带。另外,发射带能量与实验条件无关。所有这些特性使它们成为NIR图像最有希望的代理商。本文证明了对羟基苯甲酸酯配体可以作为一种有效的敏化剂,用于在NIR中发射的几种发光镧系阳离子(Nd,Ho,Er,Tm,Yb)。开发了一种八齿配体来满足镧系元素阳离子的完整配位要求,以实现复合物更高的稳定性,以维持生理条件,从而最大程度地保护配位的镧系元素阳离子免受非辐射失活。为了研究和合理化配体对镧系元素能量转移的机理,合成了对pol酮的衍生物及其相应的配合物。能量转移的机理可用于设计具有可控性能的镧系元素配合物。

著录项

  • 作者

    Zhang Jian;

  • 作者单位
  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en
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