Artukhov Viktor Ya, Zharkova Oksana M, Morozova Julia P
Tomsk State University, Russia, Tomsk-50, Lenina 36, Russian Federation.
Spectrochim Acta A Mol Biomol Spectrosc. 2007 Sep;68(1):36-42. doi: 10.1016/j.saa.2006.10.048. Epub 2006 Nov 6.
Some important and essential features of absorption and fluorescence spectra of prodan in homogeneous and binary mixes are studied. According to results obtained from experimental and quantum-chemical researches we show that the absorption spectrum of prodan in nonpolar solvent within 25,000-50,000 cm(-1) is formed by eight electronic transitions. Quantum-chemical calculations are performed in the geometry of both the ground and exited states of prodan. The rate constants of photoprocesses and the quantum yield of fluorescence are determined for the prodan and its complexes with water. A dramatic shift of the fluorescence band at changing from nonpolar solvent to isopropyl alcohol and water is explained. The roles of general solvent effects and specific interactions are separated. According to values of molecular electrostatic potential and charges on atoms the centers of possible interaction of prodan with a solvent are obtained. Possible models of prodan complexes in water are offered. The results of quantum-chemical calculation for offered complexes of prodan in water are compared with those for the free prodan molecule. The presence of the second band (about 24,000 cm(-1)) in fluorescence spectra of prodan in isopropyl (ethyl) alcohol-water solvents is explained.
研究了原卟啉在均相和二元混合物中的吸收光谱和荧光光谱的一些重要且基本的特征。根据实验和量子化学研究结果,我们表明原卟啉在非极性溶剂中25,000 - 50,000 cm⁻¹范围内的吸收光谱由八个电子跃迁形成。在原卟啉基态和激发态的几何构型下进行了量子化学计算。测定了原卟啉及其与水的配合物的光化学过程速率常数和荧光量子产率。解释了从非极性溶剂转变为异丙醇和水时荧光带的显著位移。区分了一般溶剂效应和特定相互作用的作用。根据分子静电势值和原子上的电荷,得到了原卟啉与溶剂可能相互作用的中心。提出了原卟啉在水中配合物的可能模型。将所提出的原卟啉在水中配合物的量子化学计算结果与游离原卟啉分子的计算结果进行了比较。解释了原卟啉在异丙醇(乙醇) - 水溶剂中的荧光光谱中第二条谱带(约24,000 cm⁻¹)的存在。