Red-emitting boron difluoride complexes with a mega-large Stokes shift and unexpectedly high fluorescence quantum yield

Introduction of a tetrahydroquinoxaline donor into boron difluoride complexes largely extended their emissions (617-684 nm), highly improved their fluorescence quantum yields (up to 0.68) and greatly increased their Stokes shifts (up to 209 nm). These new fluorescent dyes showed reversible ratiometr...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2020-02, Vol.56 (14), p.2159-2162
Hauptverfasser: Ren, Xiaojie, Zhang, Fan, Luo, Hongchen, Liao, Lide, Song, Xiangzhi, Chen, Wenqiang
Format: Artikel
Sprache:eng
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Zusammenfassung:Introduction of a tetrahydroquinoxaline donor into boron difluoride complexes largely extended their emissions (617-684 nm), highly improved their fluorescence quantum yields (up to 0.68) and greatly increased their Stokes shifts (up to 209 nm). These new fluorescent dyes showed reversible ratiometric solid-state fluorescence changes upon switched acid/base fumings. Significantly, these boron difluoride complexes were successfully utilized as imaging agents in living cells and zebrafish. Introduction of a tetrahydroquinoxaline donor into boron difluoride complexes largely extended their emissions (617-684 nm), highly improved their fluorescence quantum yields (up to 0.68) and greatly increased their Stokes shifts (up to 209 nm).
ISSN:1359-7345
1364-548X
DOI:10.1039/c9cc09523c