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Donor-acceptor substituted phenylethynyltriphenylenes – excited state intramolecular charge transfer, solvatochromic absorption and fluorescence emission

机译:供体-受体取代的苯基乙炔基三亚苯基-激发态分子内电荷转移,溶剂变色吸收和荧光发射

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摘要

Several 2-(phenylethynyl)triphenylene derivatives bearing electron donor and acceptor substituents on the phenyl rings have been synthesized. The absorption and fluorescence emission properties of these molecules have been studied in solvents of different polarity. For a given derivative, solvent polarity had minimal effect on the absorption maxima. However, for a given solvent the absorption maxima red shifted with increasing conjugation of the substituent. The fluorescence emission of these derivatives was very sensitive to solvent polarity. In the presence of strongly electron withdrawing (–CN) and strongly electron donating (–NMe2) substituents large Stokes shifts (up to 130 nm, 7828 cm−1) were observed in DMSO. In the presence of carbonyl substituents (–COMe and –COPh), the largest Stokes shift (140 nm, 8163 cm−1) was observed in ethanol. Linear correlation was observed for the Stokes shifts in a Lippert–Mataga plot. Linear correlation of Stokes shift was also observed with ET(30) scale for protic and aprotic solvents but with different slopes. These results indicate that the fluorescence emission arises from excited state intramolecular charge transfer in these molecules where the triphenylene chromophore acts either as a donor or as an acceptor depending upon the nature of the substituent on the phenyl ring. HOMO–LUMO energy gaps have been estimated from the electrochemical and spectral data for these derivatives. The HOMO and LUMO surfaces were obtained from DFT calculations.
机译:已经合成了几种在苯环上带有电子给体和受体取代基的2-(苯基乙炔基)三亚苯基衍生物。已经在不同极性的溶剂中研究了这些分子的吸收和荧光发射特性。对于给定的衍生物,溶剂极性对吸收最大值的影响最小。然而,对于给定的溶剂,最大吸收红随着取代基共轭的增加而移动。这些衍生物的荧光发射对溶剂极性非常敏感。在存在强烈吸电子(–CN)和强烈给电子(–NMe2)取代基的情况下,在DMSO中观察到较大的斯托克斯位移(最大130 nm,7828 cm-1)。在羰基取代基(–COMe和–COPh)存在下,在乙醇中观察到最大的斯托克斯位移(140 nm,8163 cm-1)。在Lippert-Mataga图中观察到斯托克斯位移的线性相关性。质子和非质子溶剂的ET(30)标度也观察到斯托克斯位移的线性相关性,但斜率不同。这些结果表明,荧光发射是由这些分子中的激发态分子内电荷转移引起的,其中苯环生色团根据苯环上取代基的性质而充当供体或受体。从这些衍生物的电化学和光谱数据可以估算出HOMO-LUMO能隙。从DFT计算获得HOMO和LUMO表面。

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