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新型 BODIPY 染料的红边波长精细可调激光作用。

Red-edge-wavelength finely-tunable laser action from new BODIPY dyes.

机构信息

Departamento de Quimica Organica I, Facultad de Ciencias Quimicas, Universidad Complutense, 28040-Madrid, Spain.

出版信息

Phys Chem Chem Phys. 2010 Jul 28;12(28):7804-11. doi: 10.1039/b925561c. Epub 2010 May 25.

Abstract

New BODIPY dyes with two 4-formylphenyl, 4-(2,2-dimethoxycarbonylvinyl)phenyl and 4-(2,2-dicyanovinyl)phenyl groups at the 3- and 5-positions have been successfully designed and synthesized via palladium-catalyzed coupling reaction or Knoevenagel-type condensations. Structural modification of the BODIPY core via conjugation-extending residues significantly affects the spectroscopy and photophysical properties of the BODIPY fluorophore. These substituents cause the largest bathochromic shift in both absorption and emission spectra, which are shifted toward the red compared to its 4-phenylsubstituted analogue. Additionally, the fluorescence quantum yields and the Stokes shifts are also significantly higher than the corresponding phenyl-substituted dye. New BODIPY dyes have a high laser photostability, superior to that of commercial dyes with laser emission in the same spectral region, such as Perylene Red and Rhodamine 640. The substitution introduced in these derivatives allows to obtain tunable laser emission with a bandwidth of 0.15 cm(-1) and a tuning range of up to 50 nm. So with these three dyes it is possible to cover the spectral range 590-680 nm in a continuous way and with stable laser emission and small linewidth.

摘要

具有两个 4-甲酰基苯基、4-(2,2-二甲氧羰基乙烯基)苯基和 4-(2,2-二氰基乙烯基)苯基的新型 BODIPY 染料,已经通过钯催化偶联反应或 Knoevenagel 型缩合反应成功设计和合成。BODIPY 核心的结构修饰通过共轭延伸残基显著影响 BODIPY 荧光团的光谱和光物理性质。这些取代基导致吸收光谱和发射光谱的最大红移,与相应的 4-苯基取代类似物相比,向红移动。此外,荧光量子产率和斯托克斯位移也明显高于相应的苯基取代染料。新型 BODIPY 染料具有高激光光稳定性,优于具有相同光谱区域激光发射的商业染料,如 Perylene Red 和 Rhodamine 640。这些衍生物中的取代基允许获得带宽为 0.15 cm(-1)、调谐范围可达 50 nm 的可调谐激光发射。因此,使用这三种染料可以连续覆盖 590-680 nm 的光谱范围,并具有稳定的激光发射和较小的线宽。

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