Department of Chemistry, Graduate School of Science, Kyoto University , Sakyo-ku, Kyoto 606-8502, Japan.
Spectroscopy Laboratory for Functional π-electronic Systems and Department of Chemistry, Yonsei University , Seoul 03722, Korea.
J Am Chem Soc. 2017 Jul 5;139(26):9075-9088. doi: 10.1021/jacs.7b05332. Epub 2017 Jun 23.
Porphyrin tapes possessing meso-meso β-β β-β triple direct linkages have been targets of extensive studies because of their fully conjugated characteristic π-electronic networks. In this paper, we report porphyrin arch-tapes that bear additional carbonyl group(s) or methylene group(s) inserted between one of the β-β linkage(s) of the porphyrin tapes. The carbonyl-inserted porphyrin arch-tapes were efficiently synthesized by double fusion reactions of β-to-β carbonyl-bridged porphyrin oligomers with DDQ and Sc(OTf), and were converted to the methylene-bridged porphyrin arch-tapes via Luche reduction with NaBH and CeCl followed by ionic hydrogenation with HBF·OEt and BH·NEt. While the conventional porphyrin tapes display rigid and planar structures and low solubilities, these porphyrin arch-tapes show remarkably contorted structures, flexible conformations, and improved solubilities because of the presence of the incorporated seven-membered ring(s). Interestingly, the methylene-inserted arch-tapes exhibited conjugative electronic interactions that were comparable to those of porphyrin tapes probably owing to through-space interaction in the contorted conformations. The carbonyl-inserted arch-tapes displayed distinctly larger conjugative interactions owing to an active involvement of the carbonyl group(s) in the electronic conjugation. A similar trend was observed in the nonlinear optical properties, as evidenced by their two-photon absorption cross sections. Furthermore, as a benefit of the contorted structures, these porphyrin arch-tapes can catch C fullerene effectively. Naturally, the electron-rich methylene-bridged arch-tapes exhibited larger association constants than the electron-deficient carbonyl-bridged arch-tapes. Among these arch-tapes, a methylene-bridged syn-Ni(II) porphyrin trimer recorded the largest association constant of (1.5 ± 0.4) × 10 M in toluene at 25 °C.
具有间-间β-ββ-β三重直接键的卟啉带因其完全共轭的特征π电子网络而成为广泛研究的目标。在本文中,我们报告了具有额外的羰基或亚甲基插入卟啉带的一个β-β键之间的卟啉弓带。通过β-到-β羰基桥联卟啉低聚物与 DDQ 和 Sc(OTf) 的双重融合反应,有效地合成了羰基插入的卟啉弓带,并通过 Luche 还原与 NaBH 和 CeCl 将其转化为亚甲基桥联的卟啉弓带随后用 HBF·OEt 和 BH·NEt 进行离子氢化。虽然常规的卟啉带显示出刚性和平坦的结构和低的溶解度,但这些卟啉弓带由于存在七元环而显示出显著的扭曲结构、灵活的构象和改善的溶解度。有趣的是,亚甲基插入的弓带表现出与卟啉带相当的共轭电子相互作用,这可能归因于扭曲构象中的空间相互作用。由于羰基的参与,羰基插入的弓带显示出明显更大的共轭相互作用。在非线性光学性质中也观察到了类似的趋势,这可以通过它们的双光子吸收截面来证明。此外,作为扭曲结构的好处,这些卟啉弓带可以有效地捕获 C60 富勒烯。自然地,电子富有的亚甲基桥联弓带比电子缺的羰基桥联弓带表现出更大的结合常数。在这些弓带中,亚甲基桥联的顺式 Ni(II)卟啉三聚体在 25°C 的甲苯中记录到最大的结合常数为(1.5±0.4)×10 M。