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Biarylpyridine fluorescent chemosensors: Synthesis, structural studies, and combinatorial discovery of a mercury(II) sensor.

机译:Biarylpyridine荧光化学传感器:汞(II)传感器的合成,结构研究和组合发现。

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摘要

Biarylpyridine fluorescent chemosensors designed to signal binding events using conformational restriction as a signaling mechanism are described. Simple polyether binding domains were found to be both selective and sensitive towards Li+, Mg2+, and Ca2+ in acetonitrile. The utility of these fluorophores is enhanced through a visibly emissive charge transfer (CT) band that emerges on protonation, or metal coordination to the pyridine nitrogen atom. This leads to dual-channel fluorescent chemosensors that can signal binding events via conformational restriction or induced charge transfer.; In order to tune the emission wavelength of these fluorophores, it was deemed necessary to access 2,4,6-trisubstituted pyridines. This led to an improved synthesis of 2,6-dichloro-4-iodopyridine, which was demonstrated to be a useful compound for the preparation of 2,6-biaryl- and 2,4,6-triarylpyridines.; Studies into the effects of structure on fluorophore optical properties led to the synthesis of an array of substituted pyridine derivatives. Results of the structural studies revealed that the o,o' -CH3 groups moderated locally excited (LE) state emission. This is important, since a low initial quantum yield provides for a greater dynamic range in signaling via conformational restriction. Fluorophore polarization with p,p'-OCH3 groups provided a beneficial red-shift in LE emission. However, it also caused an undesirable reduction in CT emission. Further polarization of the fluorophore quickly led to non-emissive CT states. Extension of the chromophore surface area by addition of a phenyl or benzofittan chromophore to the 4-position of the pyridine resulted in red shifts in LE emission, along with undesirable increases in quantum yield. As a result of the structural studies, the vinylogous amide fluorophore was chosen for further study due to its modest visible emission.; In order to extend the versatility of biarylpyridine fluorescent chemosensors, a combinatorial library was designed making use of the vinylogous amide fluorophore. Parallel solid-phase organic synthesis provided a 198 compound library containing an amino acid derived binding domain. Library members containing thiourea end-caps responded to Hg(II) complexation with readily visible fluorescence intensity increases. Solution phase synthesis and studies of an active library member verified the solid-phase results.
机译:描述了被设计成使用构象限制作为信号传导机制来信号传导结合事件的联芳基吡啶荧光化学传感器。发现简单的聚醚结合结构域对乙腈中的Li +,Mg2 +和Ca2 +具有选择性和敏感性。这些荧光团的用途通过质子化或与吡啶氮原子的金属配位时出现的可见发射电荷转移(CT)带而增强。这导致双通道荧光化学传感器可以通过构象限制或诱导的电荷转移来发出结合事件的信号。为了调节这些荧光团的发射波长,认为有必要接触2,4,6-三取代的吡啶。这导致2,6-二氯-4-碘吡啶的合成得到改善,已证明是制备2,6-二芳基-和2,4,6-三芳基吡啶的有用化合物。对结构对荧光团光学性质的影响的研究导致了一系列取代吡啶衍生物的合成。结构研究的结果表明,o,o'-CH3基团可缓和局部激发(LE)态发射。这很重要,因为低的初始量子产率会通过构象限制在信号传递中提供更大的动态范围。具有p,p'-OCH3基团的荧光团极化在LE发射中提供了有益的红移。然而,这也导致CT发射的不期望的减少。荧光团的进一步极化迅速导致非发射CT状态。通过在吡啶的4-位上添加苯基或苯并菲基酮发色团来扩展发色团表面积,会导致LE发射发生红移,同时导致量子产率的增加。作为结构研究的结果,由于乙烯基适量的可见光发射,选择了乙烯基酰胺基荧光团用于进一步的研究。为了扩展联芳基吡啶荧光化学传感器的多功能性,设计了一个组合库,该组合库使用了乙烯基酰胺基荧光团。平行固相有机合成提供了一个198个化合物库,其中包含氨基酸衍生的结合结构域。包含硫脲端盖的库成员对Hg(II)络合物作出反应,荧光强度明显增加。固溶体的固溶相合成和研究证实了固相结果。

著录项

  • 作者

    Mello, Jesse Vincent.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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