4.8 Article

The origin of the solvent dependence of fluorescence quantum yields in dipolar merocyanine dyes

期刊

CHEMICAL SCIENCE
卷 10, 期 48, 页码 11013-11022

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9sc05012d

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资金

  1. Deutsche Forschungsgemeinschaft [FOR 1809]
  2. Bavarian Ministry of Education, Culture, Research, and the Fine Arts
  3. ERC Consolidator Grant DYNAMO [646737]

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Fluorophores with high quantum yields are desired for a variety of applications. Optimization of promising chromophores requires an understanding of the non-radiative decay channels that compete with the emission of photons. We synthesized a new derivative of the famous laser dye 4-dicyanomethylen-2-methyl-6-p-dimethylaminostyryl-4H-pyran (DCM), i.e., merocyanine 4-(dicyanomethylene)-2-tert-butyl-6-[3-(3-butyl-benzothiazol-2-ylidene)1-propenyl]-4H-pyran (DCBT). We measured fluorescence lifetimes and quantum yields in a variety of solvents and found a trend opposite to the energy gap law. This motivated a theoretical investigation into the possible non-radiative decay channels. We propose that a barrier to a conical intersection exists that is very sensitive to the solvent polarity. The conical intersection is characterized by a twisted geometry which allows a subsequent photoisomerization. Transient absorption measurements confirmed the formation of a photoisomer in unpolar solvents, while the measurements of fluorescence quantum yields at low temperature demonstrated the existence of an activation energy barrier.

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