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首页> 外文期刊>Dyes and Pigments >The synthesis, structure and spectral properties of new long-wavelength benzodipyrroleninium-based bis-styryl dyes
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The synthesis, structure and spectral properties of new long-wavelength benzodipyrroleninium-based bis-styryl dyes

机译:新型长波长苯并二吡咯烷鎓双苯乙烯基染料的合成,结构和光谱性质

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摘要

Novel bis-styryl dyes based on a quaternized centrosymmetrical benzodipyrrolenine moiety were synthesized by reaction of a quaternized benzodipyrrolenine with two equivalents of 4-dimethylami-nobenzaldehyde, 4-dimethylaminocinnamoic aldehyde or 4-(3,5-diphenyl-4,5-dihydro-1H-1-pyrazolyl) benzaldehyde. The molecular structures and spectral properties of these dyes were investigated using PM3 and PPP CI quantum chemical simulations and compared with biscyanines and parent "monomeric" styryl dyes. Conjugation of two uniform "monomeric" styryl chromophores to form a bis-chromophoric system was found to cause a pronounced red-shift (~ 100 nm) of the absorption and emission maxima, an increase of the extinction coefficients but also a conformational rigidization of the molecules. This results in better vibrationally resolved absorption and emission bands and, in general, in increased quantum yields. Bis-styryl dyes absorb and emit in the red and near-IR spectral region (643-812 nm). They have high extinction coefficients (≤133,000 M~(-1) cm~(-1)), large Stokes' shifts (up to 55 nm in chloroform and 90 nm in methanol), and quantum yields in chloroform ≤10%, whereas polar solvents decrease quantum yields. Despite their symmetrical structures these bis-styryl dyes exhibit spectral properties in solvents of different polarity that are more resemble those of unsymmetrical "monomeric" styryls.
机译:通过季铵化的苯并二吡咯烷与二当量的4-二甲基氨基-苯甲醛,4-二甲基氨基肉桂醛或4-(3,5-二苯基-4,5-二氢- 1H-1-吡唑基)苯甲醛。使用PM3和PPP CI量子化学模拟研究了这些染料的分子结构和光谱性质,并将其与双花菁和母体“单体”苯乙烯基染料进行了比较。发现两个均匀的“单体”苯乙烯基生色团结合形成双发色团会导致吸收和发射最大值出现明显的红移(〜100 nm),消光系数增加,但构象变硬。分子。这样可以产生更好的振动分辨吸收带和发射带,并且通常可以提高量子产率。双苯乙烯基染料吸收并发射红色和近红外光谱区域(643-812 nm)。它们具有高消光系数(≤133,000M〜(-1)cm〜(-1)),较大的斯托克斯位移(在氯仿中高达55 nm,在甲醇中高达90 nm),在氯仿中的量子产率≤10%,而极性溶剂会降低量子产率。尽管它们具有对称结构,但这些双苯乙烯基染料在不同极性的溶剂中仍显示出光谱特性,该特性更类似于非对称“单体”苯乙烯基的那些。

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