Li Yunjing, Pritchett Timothy M, Huang Jiandong, Ke Meirong, Shao Pin, Sun Wenfang
Department of Chemistry and Molecular Biology, North Dakota State University, Fargo, North Dakota 58105-5516, USA.
J Phys Chem A. 2008 Aug 7;112(31):7200-7. doi: 10.1021/jp7108835. Epub 2008 Jul 11.
The photophysical properties, such as the UV-vis absorption spectra, triplet transient difference absorption spectra, triplet excited-state extinction coefficients, quantum yields of the triplet excited state, and lifetimes of the triplet excited state, of 10 novel zinc phthalocyanine derivatives with mono- or tetraperipheral substituents have been systematically investigated in DMSO solution. All these complexes exhibit a wide optical window in the visible spectral range and display long triplet excited-state lifetimes (140-240 mus). It has been found that the complexes with tetrasubstituents at the alpha-positions exhibit a bathochromic shift in their UV-vis absorption spectra, fluorescence spectra, and triplet transient difference absorption spectra and have larger triplet excited-state absorption coefficients. The nonlinear absorption of these complexes has been investigated using the Z-scan technique. It is revealed that all complexes exhibit a strong reverse saturable absorption at 532 nm for nanosecond and picosecond laser pulses. The excited-state absorption cross sections were determined through a theoretical fitting of the experimental data using a five-band model. The complexes with tetrasubstituents at the alpha-positions exhibit larger ratios of triplet excited-state absorption to ground-state absorption cross sections (sigma T/sigma g) than the other complexes. In addition, the wavelength-dependent nonlinear absorption of these complexes was studied in the range of 470-550 nm with picosecond laser pulses. All complexes exhibit reverse saturable absorption in a broad visible spectral range for picosecond laser pulses. Finally, the nonlinear transmission behavior of these complexes for nanosecond laser pulses was demonstrated at 532 nm. All complexes, and especially the four alpha-tetrasubstituted complexes, exhibit stronger reverse saturable absorption than unsubstituted zinc phthalocyanines due to the larger ratio of their excited-state absorption cross sections to their respective ground-state absorption cross sections.
在二甲基亚砜(DMSO)溶液中,系统研究了10种具有单或四周边取代基的新型锌酞菁衍生物的光物理性质,如紫外可见吸收光谱、三重态瞬态差分吸收光谱、三重态激发态消光系数、三重态激发态量子产率以及三重态激发态寿命。所有这些配合物在可见光谱范围内都表现出较宽的光学窗口,并具有较长的三重态激发态寿命(140 - 240微秒)。已发现,在α位具有四取代基的配合物在其紫外可见吸收光谱、荧光光谱和三重态瞬态差分吸收光谱中表现出红移,并且具有更大的三重态激发态吸收系数。使用Z扫描技术研究了这些配合物的非线性吸收。结果表明,对于纳秒和皮秒激光脉冲,所有配合物在532 nm处均表现出强烈的反饱和吸收。通过使用五波段模型对实验数据进行理论拟合,确定了激发态吸收截面。在α位具有四取代基的配合物比其他配合物表现出更大的三重态激发态吸收与基态吸收截面之比(σT/σg)。此外,使用皮秒激光脉冲在470 - 550 nm范围内研究了这些配合物的波长依赖性非线性吸收。对于皮秒激光脉冲,所有配合物在宽可见光谱范围内均表现出反饱和吸收。最后,在532 nm处展示了这些配合物对于纳秒激光脉冲的非线性传输行为。由于激发态吸收截面与各自基态吸收截面的比值较大,所有配合物,尤其是四种α-四取代配合物,比未取代的锌酞菁表现出更强的反饱和吸收。