School of Chemistry, University of Melbourne, Melbourne, Victoria, Australia.
Photochem Photobiol Sci. 2013 Jun;12(6):1086-90. doi: 10.1039/c3pp50027f. Epub 2013 Apr 15.
Previous reports of unusual dual fluorescence in several porphyrazines proposed for use in photodynamic therapy and biomedical imaging have been re-examined. The blue-violet emissions previously assigned to S2-S0 fluorescence of these porphyrazines are shown to exhibit fluorescence excitation spectra that do not coincide with their absorption spectra, and the photophysical properties of the emission calculated from measured quantum yields and decay parameters do not match those calculated from the absorption spectra. In addition, the blue-violet emission intensities increase on exposure of aerated solutions of the porphyrazines to a broad spectrum of UV-visible light. The blue-violet emissions previously assigned to S2-S0 fluorescence of these porphyrazines themselves are therefore re-assigned to S1-S0 fluorescence of small amounts of photolysis products strongly absorbing in the same near UV spectral regions.
先前有报道称,几种拟用于光动力疗法和生物医学成像的卟啉在被激发时会产生异常的双重荧光,我们对这些报道进行了重新检验。我们发现,先前被分配给这些卟啉 S2-S0 荧光的蓝紫色发射显示出荧光激发光谱与它们的吸收光谱不重合,并且从测量的量子产率和衰减参数计算出的发射光物理性质与从吸收光谱计算出的性质不匹配。此外,在有氧条件下,将卟啉溶液暴露于广谱的紫外可见光下,会导致蓝紫色发射强度增加。因此,我们将先前被分配给这些卟啉 S2-S0 荧光的蓝紫色发射重新分配给在相同近紫外光谱区域强烈吸收的少量光解产物的 S1-S0 荧光。