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首页> 外文期刊>有機合成化学協会誌 >Fluorescent Sensors Based on a Novel Functional Design: Combination of an Environment-sensitive Fluorophore with Polymeric and Self-assembled Arcnitectures
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Fluorescent Sensors Based on a Novel Functional Design: Combination of an Environment-sensitive Fluorophore with Polymeric and Self-assembled Arcnitectures

机译:基于新型功能设计的荧光传感器:环境敏感荧光团与聚合物和自组装弧形建筑的组合

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摘要

The fluorescence properties, e.g., fluorescence intensity, of fluorescent sensors can change due to covalent derivatization or noncovalent complexation with a target chemical species (i.e., molecules and ions) or by variations in circumstantial physical parameters (e.g., temperature and viscosity). The internal charge transfer (ICT) character and photoinduced electron transfer (PET) efficiency can be used to tune the fluorescence switching mechanism, facilitating the development of new fluorescent sensors. In addition, the utilization of an environment-sensitive (i.e., polarity- and hydrogen bonding-sensitive) fluorophore in stimulus-responsive macromolecules to design novel fluorescent sensors has been proposed. Based on this concept, nighly sensitive fluorescent polymeric thermometers and (extremely sensitive) digital fluorescent pH sensors have been developed. These thermometers are being used to measure the temperature of live cells in biological and medical studies. This concept has also allowed nanoscale proton mapping near membranes, which exemplifies the downsizing of targets for fluorescent sensing from a micrometer-scale to a nanometer-scale.
机译:荧光特性,例如荧光传感器的荧光强度可以通过与目标化学物质(即分子和离子)的共价衍生化或非共价络合或通过间接物理参数(例如,温度和粘度)的变化来改变。内部电荷转移(ICT)特征和光抑制电子转移(PET)效率可用于调整荧光切换机构,促进新的荧光传感器的开发。此外,已经提出利用环境敏感(即极性和氢键敏感)荧光团以设计新的荧光传感器。基于该概念,已经开发出敏感的荧光聚合物温度计和(极其敏感)数字荧光pH传感器。这些温度计用于测量生物学和医学研究中活细胞的温度。该概念还允许膜附近的纳米级质子映射,这例示了荧光感测的靶向荧光感测到纳米级的尺寸。

著录项

  • 来源
    《有機合成化学協会誌》 |2019年第11期|共12页
  • 作者

    Seiichi Uchiyama;

  • 作者单位

    Graduate School ofPharmaceutical Sciences) The Lmversity of Tokyo 7-3-1 Hongo Bunkyo—ku Tokyo 113-0033 Japan;

  • 收录信息
  • 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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