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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Observation and Interpretation of Annulated Porphyrins: Studies on the Photophysical Properties of meso-Tetraphenylmetalloporphyrins
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Observation and Interpretation of Annulated Porphyrins: Studies on the Photophysical Properties of meso-Tetraphenylmetalloporphyrins

机译:环状卟啉的观察与解释:中四四苯基金属卟啉的光物理性质研究

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We present results of a joint computational and experimental study for a series of annulated metalloporphyrins in order to establish structure-property relationships. Specifically, we have examined the effects of substitution by meso-tetraphenylation, tetrabenzo and tetranaphtho annulation, and effects of changing the central metal from zinc (Zn) to palladium (Pd). Utilizing absorption and emission spectroscopy and laser flash photolysis techniques, the photophysical properties of these porphyrins have been determined. Upon the addition of benzo or naphtho groups, we observed an overall red shift in the ground state absorption spectra of both the B-bands and the Q-bands with increased conjugation and an increase in the Q-band to B-band intensity ratios. Time-dependent density functional theory calculations were performed on both series of porphyrins to identify the effects of phenyl, benzo, and naphtho substituents on the spectra. The benzo and naphtho adducts provide a larger contribution (typically 40-90%) to the observed red shifts due to increased π-conjugation, while there is a smaller contribution (typically 0-25%) from distortion of the porphyrin. Similarly, a red shift for the T_1-T_n absorption spectrum and an overall general broadening in the spectrum were found with increased conjugation. An increase in the triplet molar extinction coefficient through the near-infrared region with annulation was also found. Varying the metal has an effect on the overall absorption spectra; i.e., the ground state spectra of the Zn porphyrins are red-shifted relative to the Pd porphyrins. For the triplet excited state spectra there were small effects in the spectra by changing the metal with a significant contribution to the kinetic properties by the heavy atom effect of the Pd.
机译:我们提出了一系列的环状金属卟啉联合计算和实验研究的结果,以建立结构-性质的关系。具体来说,我们已经研究了介孔四苯环化,四苯并和四萘环化取代的影响,以及将中心金属从锌(Zn)变为钯(Pd)的影响。利用吸收和发射光谱以及激光闪光光解技术,已经确定了这些卟啉的光物理性质。添加苯并或萘基后,我们观察到B波段和Q波段基态吸收光谱的总体红移随着共轭的增加和Q波段与B波段强度比的增加而增加。对两个系列的卟啉进行了随时间变化的密度泛函理论计算,以确定苯基,苯并和萘取代基对光谱的影响。由于增加的π-共轭作用,苯并和萘酚加合物对观察到的红移提供了较大的贡献(通常为40-90%),而卟啉的扭曲贡献较小(通常为0-25%)。类似地,发现随着共轭的增加,T_1-T_n吸收光谱发生红移,光谱整体总体变宽。还发现,随着成环作用,穿过近红外区域的三线态摩尔消光系数增加。改变金属对总吸收光谱的影响。即Zn卟啉的基态光谱相对于Pd卟啉是红移的。对于三重态激发态光谱,通过改变金属而对光谱的影响很小,而金属由于Pd的重原子效应而对动力学特性产生重大影响。

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