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游离碱N-杂四苯基卟啉的超快光谱学

Ultrafast spectroscopy of free-base N-confused tetraphenylporphyrins.

作者信息

Alemán Elvin A, Rajesh Cheruvallil S, Ziegler Christopher J, Modarelli David A

机构信息

Department of Chemistry and The Center for Laser and Optical Spectroscopy, Knight Chemical Laboratory, The University of Akron, Akron, Ohio 44325-3601, USA.

出版信息

J Phys Chem A. 2006 Jul 20;110(28):8605-12. doi: 10.1021/jp062061a.

Abstract

The photophysical characterization of the two tautomers (1e and 1i) of 5,10,15,20-tetraphenyl N-confused free-base porphyrin, as well as the tautomer-locked 2-methyl 5,10,15,20-tetraphenyl N-confused free-base porphyrin, was carried out using a combination of steady state and time-resolved optical techniques. N-Confused porphyrins, alternatively called 2-aza-21-carba-porphyrins or inverted porphyrins, are of great interest for their potential as building blocks in assemblies designed for artificial photosynthesis, and understanding their excited-state properties is paramount to future studies in multicomponent arrays. Femtosecond resolved transient absorption experiments reveal spectra that are similar to those of tetraphenylporphyrin (H2TPP) with either Soret or Q-band excitation, with an extinction coefficient for the major absorbing band of 1e that was about a factor of 5 larger than that of H2TPP. The lifetime of the S1 state was determined at a variety of absorption wavelengths for each compound and was found to be consistent with time-resolved fluorescence experiments. These experiments reveal that the externally protonated tautomer (1e) is longer lived (tau = 1.84 ns) than the internally protonated form (1i, tau = 1.47 ns) by approximately 369 ps and that the N-methyl N-confused porphyrin was shorter lived than the tautomeric forms by approximately 317 ps (DMAc) and approximately 396 ps (benzene). Steady-state fluorescence experiments on tautomers 1e and 1i and the N-methyl analogues corroborate these results, with fluorescence quantum yields (Phi(Fl)) of 0.046 (1e, DMAc) and 0.023 (1i, benzene), and 0.025 (DMAc) and 0.018 (benzene) for the N-methyl N-confused porphyrin. The lifetime and quantum yield data was interpreted in terms of structural changes that influence the rate of internal conversion. The absorption and transient absorption spectra of these porphyrins were also examined in the context of DFT calculations at the B3LYP/6-31G(d)//B3LYP/3-21G(d) level of theory and compared to the spectra/electronic structure of H2TPP and tetraphenyl chlorin.

摘要

利用稳态和时间分辨光学技术相结合的方法,对5,10,15,20-四苯基N-杂化自由碱卟啉的两种互变异构体(1e和1i)以及互变异构体锁定的2-甲基-5,10,15,20-四苯基N-杂化自由碱卟啉进行了光物理表征。N-杂化卟啉,也被称为2-氮杂-21-碳杂卟啉或反式卟啉,因其作为人工光合作用组件构建块的潜力而备受关注,了解它们的激发态性质对于多组分阵列的未来研究至关重要。飞秒分辨瞬态吸收实验揭示,在Soret或Q带激发下,其光谱与四苯基卟啉(H2TPP)的光谱相似,1e主要吸收带的消光系数比H2TPP大约大5倍。在每个化合物的各种吸收波长下测定了S1态的寿命,发现其与时间分辨荧光实验结果一致。这些实验表明,外部质子化的互变异构体(1e)的寿命(τ = 1.84 ns)比内部质子化形式(1i,τ = 1.47 ns)长约369 ps,并且N-甲基N-杂化卟啉的寿命比互变异构体形式短约317 ps(DMAc)和约396 ps(苯)。对互变异构体1e和1i以及N-甲基类似物进行的稳态荧光实验证实了这些结果,N-甲基N-杂化卟啉的荧光量子产率(Φ(Fl))分别为0.046(1e,DMAc)和0.023(1i,苯),以及0.025(DMAc)和0.018(苯)。根据影响内转换速率的结构变化对寿命和量子产率数据进行了解释。还在B3LYP/6-31G(d)//B3LYP/3-21G(d)理论水平的密度泛函理论(DFT)计算背景下研究了这些卟啉的吸收光谱和瞬态吸收光谱,并与H2TPP和四苯基二氢卟酚的光谱/电子结构进行了比较。

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