School of Chemical Sciences, National Institute of Science Education and Research (NISER), Homi Bhaba National Institute (HBNI), Bhubaneswar-, 752050, Odisha, India.
Inorganic and Theoretical Chemistry Section, CSIR-National Institute for Interdisciplinary Science and Technology, Trivandrum-, 695019, Kerala, India.
Chemistry. 2018 Dec 5;24(68):17997-18002. doi: 10.1002/chem.201803552. Epub 2018 Nov 8.
Syntheses of core-modified 24π pentaphyrin 7 and 20π homoporphyrin 8 are reported. The freebase form of 7 exhibits optical and H NMR spectroscopic behavior corresponding to a 4nπ nonaromatic topology at 298 K. However, upon lowering the temperature to 188 K, 7 exhibits weak aromaticity because of a small conformational change. Protonation of the imine pyrrolic nitrogen atoms results in sharpening of the absorption band with more than 100 nm red shift and two-fold increase in ϵ values. The H NMR spectra show large shielding and deshielding of specific protons accompanied by twisting of pyrrole and thiophene rings from the mean plane of the macrocycle. These observations suggest a major structural change upon protonation. The single-crystal X-ray structure of protonated 7 a reveals a severe twisting of the macrocycle, especially at the ethene bridge, and the two thiophene rings adjacent to the ethene bridge are pointed above and below the plane of the ethene bridge (49.07° and 49.08°). The nucleus-independent chemical shift (NICS) values calculated at the center of the macrocycle for the freebase and protonated derivatives of 7 a and 7 b are -5.6, -8.3 ppm and -5.3, -8.4 ppm, respectively. The anisotropy-induced current density (AICD) plots suggest a clockwise circulation of π electrons. Taken together, the changes occurring in the optical spectra, H NMR spectra, single-crystal X-ray structure and NICS calculation reflect a Möbius aromatic topology for protonated 7. However, the homoporphyrin 8 remains nonaromatic both in the freebase and protonated form.
核心修饰的 24π 五卟啉 7 和 20π 同卟啉 8 的合成得到了报道。7 的游离碱形式在 298 K 时表现出与 4nπ 非芳香拓扑相对应的光学和 H NMR 光谱行为。然而,当温度降至 188 K 时,7 表现出较弱的芳香性,这是由于构象发生了微小变化。亚胺吡咯氮原子的质子化导致吸收带的锐化,红移超过 100nm,ε 值增加一倍。H NMR 光谱显示特定质子的屏蔽和去屏蔽程度较大,同时伴随着吡咯和噻吩环从大环的平均平面扭曲。这些观察结果表明质子化后发生了主要的结构变化。质子化 7a 的单晶 X 射线结构揭示了大环的严重扭曲,特别是在乙烯桥处,并且与乙烯桥相邻的两个噻吩环指向乙烯桥平面的上方和下方(49.07°和 49.08°)。在自由碱和质子化衍生物 7a 和 7b 的大环中心计算的核独立化学位移(NICS)值分别为-5.6、-8.3 ppm 和-5.3、-8.4 ppm。各向异性诱导电流密度(AICD)图表明π 电子呈顺时针循环。综上所述,光学光谱、H NMR 光谱、单晶 X 射线结构和 NICS 计算中发生的变化反映了质子化 7 的莫比乌斯芳香拓扑。然而,同卟啉 8 在游离碱和质子化形式下均保持非芳香性。