Sharma Vijay K, Sahare P D, Rastogi Ramesh C, Ghoshal S K, Mohan D
Department of Applied Physics, Guru Jambeshwar University, Hisar, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2003 Jun;59(8):1799-804. doi: 10.1016/s1386-1425(02)00440-7.
The magnitude of the Stokes shift (frequency shifts in absorption and fluorescence spectra) is observed on changing the solvents and further has been used to calculate experimentally the dipole moments (ground state and excited state) of acriflavine and acridine orange dye molecules. Theoretically, dipole moments are calculated using PM 3 Model. The dipole moments of excited states, for both molecules investigated here, are higher than the corresponding values in the ground states. The increase in the dipole moment has been explained in terms of the nature of the excited state. Acriflavine dye overcomes the non-lasing behaviour of acridine orange due to quaternization of the central nitrogen atom.
在改变溶剂时观察到斯托克斯位移(吸收光谱和荧光光谱中的频率位移)的大小,并且该大小已被用于通过实验计算吖啶黄和吖啶橙染料分子的偶极矩(基态和激发态)。从理论上讲,偶极矩是使用PM 3模型计算的。在此研究的两个分子的激发态偶极矩均高于基态的相应值。偶极矩的增加已根据激发态的性质进行了解释。由于中心氮原子的季铵化,吖啶黄染料克服了吖啶橙的非激光行为。