Temperature-Dependent Dual Fluorescence from Small Organic Molecules

Min Wang, Runxin Wang, Cui‐Hua Zhao
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引用次数: 2

Abstract

The temperature-dependent dual fluorescence from a single component of small organic molecules (SOMs) is very promising for the ratiometric fluorescence sensing of temperature. However, the SOM-based fluorophores typically only show one fluorescence band. It is thus very challenging to achieve dual fluorescence, let alone the dual fluorescence that is sensitive to temperature. Herein, in this short review, we briefly summarized the examples of SOM-based fluorophores exhibiting temperature-dependent dual fluorescence. Through representative examples, we mainly focus on the illustration of the intrinsic mechanisms of this unusual phenomenon, which may take place because of the presence of two local minimum conformations that are thermally equilibrated in the ground state, the presence of two local minimum conformations in the first excited state as the result of significant structural relaxation upon excitation, or the presence of thermal equilibrium between the first and second excited states. Hopefully, the discussions in this short review will provide some important guidelines for the further rational molecular design of such fluorophores.

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小有机分子的温度依赖性双荧光
来自小有机分子(SOMs)的单个组分的温度依赖性双荧光对于比率荧光感测温度是非常有前途的。然而,基于SOM的荧光团通常仅显示一个荧光带。因此,实现双荧光是非常具有挑战性的,更不用说对温度敏感的双荧光了。在此,在这篇简短的综述中,我们简要总结了基于SOM的荧光团表现出温度依赖性双荧光的例子。通过代表性的例子,我们主要集中于说明这种不寻常现象的内在机制,这可能是因为存在两个在基态热平衡的局部最小构象,在第一激发态中存在两个局部最小构象是激发时显著结构弛豫的结果,或者在第一和第二激发态之间存在热平衡。希望这篇简短综述中的讨论将为这种荧光团的进一步合理分子设计提供一些重要的指导。
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CiteScore
3.70
自引率
0.00%
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0
审稿时长
12 weeks
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