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首页> 外文期刊>RSC Advances >A new type of triphenylamine based coumarin-rhodamine hybrid compound: synthesis, photophysical properties, viscosity sensitivity and energy transfer
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A new type of triphenylamine based coumarin-rhodamine hybrid compound: synthesis, photophysical properties, viscosity sensitivity and energy transfer

机译:一种新型的三苯胺基CoMarin-罗丹明杂交化合物:合成,光药性,粘度敏感性和能量转移

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摘要

A series of novel core modified triphenylamine coumarin-rhodamine systems (compounds MCMR, MCDR and DCMR) was designed and synthesized by incorporating a coumarin moiety on one and a rhodamine moiety on the other phenyl ring of the triphenylamine molecular skeleton. The resulting dyes possessed the individual advantages of coumarin and rhodamine derivatives to show high fluorescence in their spirocyclic and open form respectively. Positive solvatochromism observed in the spirocyclic form is well supported by a linear (Lippert-Mataga and Mac-Rae) and a multi-linear regression analysis (Kamlet-Taft and Catalan parameters) suggesting that for all three compounds solvent polarizability and solvent dipolarity are the main factors responsible for their slightly red shifted absorption spectra, and highly red shifted emission spectra. The viscosity studies are indicative of the induced fluorescence enhancement of open form rhodamine derivatives over the viscosity insensitive rigid lactone ring of spirocyclic form of rhodamine derivatives. In the present studies compound MCMR in its open form when excited at 440 nm shows through space energy transfer from coumarin donor to rhodamine acceptor. This design strategy is straightforward and adaptable to various deep red dyes by simply modifying the core of different fluorophores, thereby generating a through space energy transfer systems.
机译:通过在三苯胺分子骨架的其他苯基环上将香豆素部分和罗丹明部分掺杂在一个新的香豆素部分和罗丹明部分上,设计并合成了一系列新的核心改性的三苯胺Coumarin-rhodamine Systems(化合物MCMR,MCDR和DCMR)。所得染料具有香豆素和罗丹明衍生物分别以螺旋环和开放形式显示出高荧光的个体优点。在螺旋形式中观察到的正溶色溶解度是线性(Lippert-MATAGA和MAC-RAE)的很好的支持,并且多线性回归分析(Kamlet-Taft和Catalan参数),表明所有三种化合物溶剂极化性和溶剂偶像是负责其略微红移吸收光谱的主要因素和高度变频发射光谱。粘度研究表明,在罗丹明衍生物的螺旋环循环形式的粘度不敏感刚性内酯环上诱导荧光增强酚胺衍生物。在本研究中,在440nm激发时,在440nm激发时,通过从香豆素供体到罗丹明受体的空间能量转移,化合物MCMR。通过简单地修改不同荧光团的核心,这种设计策略是简单的,适应各种深红色染料,从而产生通过空间能量转移系统。

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  • 来源
    《RSC Advances 》 |2016年第107期| 共11页
  • 作者单位

    Inst Chem Technol Dept Dyestuff Technol Bombay 400019 Maharashtra India;

    Inst Chem Technol Dept Dyestuff Technol Bombay 400019 Maharashtra India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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