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稠环卟啉:π共轭的扩展显著影响卟啉π体系的芳香性和光学性质以及中心金属离子的路易斯酸性。

Ring-fused porphyrins: extension of π-conjugation significantly affects the aromaticity and optical properties of the porphyrin π-systems and the Lewis acidity of the central metal ions.

作者信息

Saegusa Yuta, Ishizuka Tomoya, Komamura Keiyu, Shimizu Soji, Kotani Hiroaki, Kobayashi Nagao, Kojima Takahiko

机构信息

Department of Chemistry, Graduate School of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennoudai, Tsukuba, Ibaraki 305-8571, Japan.

出版信息

Phys Chem Chem Phys. 2015 Jun 14;17(22):15001-11. doi: 10.1039/c5cp01420d.

DOI:10.1039/c5cp01420d
PMID:25986941
Abstract

Here, we report the effects of ring fusion, which causes expansion of the π-conjugation circuits of the porphyrin derivatives to the fused meso-aryl groups, on the aromaticity and the magnetic properties of porphyrin derivatives. These studies revealed the facts that the ring fusion with five-membered rings causes not only the remarkable red shifts of the absorption bands and narrowed HOMO-LUMO gaps, but also the contribution of anti-aromatic resonance forms to the magnetic properties as observed in the (1)H NMR spectra. The optical absorption and magnetic circular dichroism (MCD) spectroscopies indicate that the increase in the number of the fused rings causes stabilization of the LUMO level of the porphyrin derivatives and as a result induces the loosening of the LUMO degeneracy that is generally observed for porphyrins. The electronic structure of a quadruply fused porphyrin derivative was experimentally clarified by the ESR studies on the 1e(-)-oxidized and 1e(-)-reduced species in THF. Furthermore, we revealed the substituent effects of the fused meso-aryl groups of quadruply fused porphyrins (QFPs) on the crystal structures, absorption spectra and redox potentials; the sensitiveness of the substituent effects shows that the π-conjugation circuits extended to the fused meso-aryl groups. Additionally, the elongation of the bond lengths between the pyrrolic nitrogen and the central metal ions in QFP-metal complexes causes a remarkable increase of the Lewis acidity of the central metal ions.

摘要

在此,我们报道了环融合对卟啉衍生物芳香性和磁性的影响,环融合会使卟啉衍生物的π共轭回路扩展至稠合的中-芳基基团。这些研究揭示了以下事实:与五元环的环融合不仅会导致吸收带显著红移和HOMO-LUMO能隙变窄,还会如在(1)H NMR光谱中观察到的那样,使反芳香共振形式对磁性产生贡献。光吸收和磁圆二色性(MCD)光谱表明,稠合环数量的增加会导致卟啉衍生物LUMO能级的稳定,结果会导致通常在卟啉中观察到的LUMO简并性的松弛。通过对四稠合卟啉衍生物在四氢呋喃中的1e(-)-氧化态和1e(-)-还原态进行ESR研究,实验阐明了其电子结构。此外,我们揭示了四稠合卟啉(QFPs)的稠合中-芳基基团对晶体结构、吸收光谱和氧化还原电位的取代基效应;取代基效应的敏感性表明π共轭回路扩展至了稠合的中-芳基基团。此外,QFP-金属配合物中吡咯氮与中心金属离子之间键长的延长会导致中心金属离子路易斯酸度显著增加。

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