Resonance‐Enhanced Emission Effects toward Dual‐State Emissive Bright Red and Near‐Infrared Emitters

Author:

Liu Xue1,Zhao Fei1,Chen Bang1,Huang Yifu12,Xu Liyan345,Li Enmin4,Tan Lilin2,Zhang Hefeng12ORCID

Affiliation:

1. Department of Chemistry Key Laboratory for Preparation and Application of Ordered Structural Materials of Guangdong Province College of Chemistry and Chemical Engeering Shantou University, Shantou, 515063 (China)

2. Guangdong Provincial Laboratory of Chemistry and Fine Chemical Engineering Shantou 515063 China

3. Guangdong Esophageal Cancer Research Institute Shantou Sub-center Cancer Research Center Shantou University Medical College Shantou 515041 China

4. Guangdong Provincial Key Laboratory of Infectious Diseases and Molecular Immunopathology Institute of Oncologic Pathology Shantou University Medical College Shantou 515041 China

5. The Key Laboratory of Molecular Biology for High Cancer Incidence Coastal Chaoshan Area Department of Biochemistry and Molecular Biology Shantou University Medical College Shantou 515041 China

Abstract

AbstractResonance‐enhanced emission (REE) effect was discovered and lead to a novel dye family of hydrostyryl pyridinium derivatives in our recent work. Herein, the REE effect was employed to design a red and near‐infrared dual‐state emissive fluorophore family of SW−OH−NO2 derivatives which were easily synthesized by coupling an electron‐withdrawing group (W) onto nitro(hydroxyl)styryl (S−OH−NO2) through a C=C double bond as π‐bridge. The deprotonation of a phenolic hydroxyl group promoted by a nitro group and the electron‐withdrawing group (W) on the other side of the π‐bridge triggered resonance, resulting in significantly red‐shifted emission. All the resultant SW−OH−NO2 compounds showed excellent dual‐state emission behavior. Remarkably, hydrostyryl quinolinium (SQ−OH−NO2) is one of the smallest NIR emitter molecular skeleton (λem=725 nm, MW<400) and showed dual‐state emission characteristics and obvious viscosity‐depended fluorescent behaviors. In addition to constructing electron donor‐acceptor structures and prolonging π‐bridges, the REE effect promises a reliable strategy toward novel fluorophores with small size, long emissive wavelength, and dual‐emission characteristics, and importantly, feasible industrial manufactures and applications due to their easy and low‐cost synthesis strategy.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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