首页> 外文期刊>Journal of Porphyrins and Phthalocyanines >Benzo-fused low symmetry metal-free tetraazaporphyrin and phthalocyanine analogs: synthesis, spectroscopy, electrochemistry, and density functional theory calculations
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Benzo-fused low symmetry metal-free tetraazaporphyrin and phthalocyanine analogs: synthesis, spectroscopy, electrochemistry, and density functional theory calculations

机译:苯并融合低对称无金属四唑啉和酞菁类似物:合成,光谱,电化学和密度泛函理论计算

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摘要

A whole series of low-symmetry, metal-free tetrapyrrole analogs 1–11 ranging from tetraazaporphyrin H2TAP(tBu)4 to napthalocyanine H2Nc(tBu)4via H2Pc(tBu)4 have been designed and prepared. Their electronic structures have been spectroscopically and electrochemically investigated. Through the preparation of a series of tetrapyrrole compounds with just the same number of four tert-butyl substituents at similar positions of the macrocyclic ring, the effect intrinsic to the enlargement of the ring system has been easily extracted and understood. Along with the increase in the size of central conjugated system, the half-wave potentials of the first oxidation for 1–11 are shifted significantly to the negative direction. This is also true for the half-wave potentials of the first reduction process of this series of tetrapyrrole derivatives but in a slight manner. These results indicate that along with the ring extension, the energy of the HOMO increases significantly while that of the LUMO only slightly increases. The effect of the ring size of these tetrapyrrole compounds on the electronic absorption and fluorescence spectra is also clear: both the Q band and fluorescence shifts to longer wavelength with the increase in the number of fused benzene rings but with a diminishing increase due to the extending of the central conjugated system. These results were reasonably explained by considering the energy levels of frontier molecular orbitals of the series of compounds obtained by the calculations using DFT method at the B3LYP/6-31G(d) level.
机译:一系列的低对称性,无金属卟啉H2TAP(TBU)4的无金属四吡咯类似物1-11已经设计并制备了4VIA H2PC(TBU)4至Napthalocyanine H2NC(TBU)4。它们的电子结构已经光谱和电化学研究。通过制备一系列具有在大环环的类似位置的相同数量的四个叔丁基取代基的四溴苯化合物,易于提取并理解振缩环系统的效果。随着中央共轭系统的尺寸的增加,第一氧化的半波电位1-11呈现为负方向。这对于该系列四吡咯衍生物的第一减少过程的半波电位也是如此,但以轻微的方式。这些结果表明,随着环形延伸,同性恋的能量显着增加,而LUMO的能量仅略微增加。这些四吡咯化合物对电子吸收和荧光光谱的效果也很清楚:Q带和荧光两者都随着稠合的苯环的数量的增加而变化到更长的波长,但由于延伸而增加增加中央共轭系统。通过考虑通过在B3LYP / 6-31G(D)水平的DFT方法通过计算获得的一系列化合物的中线分子轨道的能量水平来合理地解释这些结果。

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