Dahiya P, Choudhury S Dutta, Maity D K, Mukherjee T, Pal H
Bhabha Atomic Research Centre, Mumbai 400085, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2008 Jan;69(1):134-41. doi: 10.1016/j.saa.2007.03.018. Epub 2007 Mar 18.
Photophysical properties of 2,6-diamino-9,10-anthraquinone (2,6-DAAQ) dye have been investigated in different solvents and solvent mixtures. The fluorescence quantum yields, fluorescence lifetimes, radiative rate constants, nonradiative rate constants and absorption and fluorescence spectral characteristics show unusual deviations in the lower polarity aprotic solvents in comparison to those in other aprotic solvents of medium to higher polarities. The results indicate that the dye exists in different structural forms in the lower and in the medium to higher polarity solvents. Drawing an analogy with the results reported for other amino-substituted dyes, it is inferred that 2,6-DAAQ dye adopts a planar intramolecular charge transfer (ICT) structure in medium to higher polarity solvents, where the amino lone pairs are in good resonance with the anthraquinone pi-cloud. In the lower polarity solvents, however, the dye is inferred to exist in a nonplanar structure where the amino lone pairs are not in good resonance with the anthraquinone pi-cloud. Due to these structural differences, the dye displays significantly different photophysical behavior in the lower polarity solvents than in the other solvents of medium to higher polarities. Supportive evidence for the above structural changes has been obtained from ab initio quantum chemical calculations on the structures of the dye under different conditions. Unusual deviations in the photophysical properties of 2,6-DAAQ dye in protic solvents in comparison to those in aprotic solvents of similar polarities are attributed to the intermolecular hydrogen bonding effect involving the OH groups of the protic solvents and the quinonoid oxygens of the dye.
研究了2,6-二氨基-9,10-蒽醌(2,6-DAAQ)染料在不同溶剂和溶剂混合物中的光物理性质。与其他中高极性非质子溶剂相比,荧光量子产率、荧光寿命、辐射速率常数、非辐射速率常数以及吸收和荧光光谱特征在低极性非质子溶剂中表现出异常偏差。结果表明,该染料在低极性和中高极性溶剂中以不同的结构形式存在。与其他氨基取代染料的报道结果进行类比,可以推断2,6-DAAQ染料在中高极性溶剂中采用平面分子内电荷转移(ICT)结构,其中氨基孤对电子与蒽醌π云具有良好的共振。然而,在低极性溶剂中,推测该染料以非平面结构存在,其中氨基孤对电子与蒽醌π云没有良好的共振。由于这些结构差异,该染料在低极性溶剂中表现出与其他中高极性溶剂显著不同的光物理行为。通过对不同条件下染料结构的从头算量子化学计算,获得了上述结构变化的支持性证据。与类似极性的非质子溶剂相比,2,6-DAAQ染料在质子溶剂中的光物理性质异常偏差归因于涉及质子溶剂的OH基团和染料的醌型氧的分子间氢键效应。