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理解葫芦脲包合的光物理效应:气相中吖啶橙的模型研究。

Understanding photophysical effects of cucurbituril encapsulation: a model study with acridine orange in the gas phase.

机构信息

Department of Chemistry, University of Toronto, Toronto, ON M5S 3H6 (Canada).

出版信息

Chemphyschem. 2013 Apr 15;14(6):1138-48. doi: 10.1002/cphc.201201008. Epub 2013 Feb 25.

Abstract

Encapsulation of dyes by cucurbituril macrocycles has proven profitable as a strategy to alter fluorescence characteristics in useful ways. Encapsulation generally results in longer fluorescence lifetimes, enhanced brightness, and solvatochromic effects not normally seen in the condensed phase. These effects have been attributed variously to both the removal of interactions with solvent molecules and to the confined environment of extremely low polarizability provided by the cucurbituril interior. It is difficult to disentangle these effects in solution. Here, we present results from gas-phase experiments designed to separate these effects, using cucurbit[7]uril (CB7), and the cationic dye acridine orange (AOH(+)) as a probe. Fluorescence properties of gaseous AOH(+) are compared with those of the gaseous AOH(+)-CB7 complex and with the properties of the dye and complex in aqueous solution. The dependence on the local environment of several spectroscopic properties is discussed, including the fluorescence excitation and emission maxima, the size of the Stokes shift, fluorescence lifetime and relative brightness. An understanding of the modulation of fluorescence properties by the local environment, such as that promoted by this work, will aid in the rational design of improved fluorophores and fluorescent sensors.

摘要

葫芦脲大环对染料的包合已被证明是一种有效的策略,可以改变荧光特性。通常,包合会导致荧光寿命延长、亮度增强以及在凝聚相通常观察不到的溶剂变色效应。这些效应归因于溶剂分子相互作用的消除和葫芦脲内部极低极化率提供的受限环境。在溶液中很难将这些效应分离开来。在这里,我们介绍了使用葫芦[7]脲(CB7)和阳离子染料吖啶橙(AOH(+))作为探针的气相实验结果,旨在分离这些效应。比较了气态 AOH(+)的荧光性质与气态 AOH(+)-CB7 配合物以及在水溶液中的染料和配合物的性质。讨论了几个光谱性质对局部环境的依赖性,包括荧光激发和发射最大值、斯托克斯位移大小、荧光寿命和相对亮度。对局部环境(如这项工作所促进的)对荧光性质的调制的理解将有助于改进荧光团和荧光传感器的合理设计。

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