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首页> 外文期刊>Angewandte Chemie >Singly and Doubly 1,2-Phenylene-Inserted Porphyrin Arch-Tape Dimers: Synthesis and Highly Contorted Structures
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Singly and Doubly 1,2-Phenylene-Inserted Porphyrin Arch-Tape Dimers: Synthesis and Highly Contorted Structures

机译:单独和双重1,2-亚苯基插入的卟啉弓胶带二聚体:合成和高度扭曲的结构

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摘要

Singly and doubly 1,2-phenylene-inserted Ni-II porphyrin arch-tape dimers 3 and 9 were synthesized from the corresponding beta-to-beta 1,2-phenylene-bridged NiII porphyrin dimers 5 and 11 via Ni-0-mediated reductive cyclization and DDQ/Sc(OTf)(3)-promoted oxidative cyclization as key steps, respectively. Owing to the fused eight-membered ring(s), 3 showed a more contorted structure than those of previously reported arch-tape dimers 2a and 2b possessing a fused seven-membered ring. Furthermore, 9 displayed much larger molecular contortion. As the molecular contortion increases, the Q band of the absorption spectrum becomes more red-shifted and the electrochemcial HOMO-LUMO gap becomes smaller, reaching at 1294 nm and 0.77 eV in 9, respectively. The effect of molecular contortion on the electronic properties was studied by means of DFT calculations.
机译:单独和双 - 亚苯基插入的Ni-II卟啉弓带二聚体3和9由相应的β-β1,2-亚苯基桥接NiIi卟啉二聚体5和11通过Ni-0介导合成 还原环化和DDQ / SC(OTF)(3)分别作为关键步骤的氧化环化。 由于熔融的八元环(S),3显示了比先前报道的拱带二聚体2a和2b具有更具扭曲的结构,具有具有稠合的七元环的2b。 此外,9显示了更大的分子扭伤。 随着分子扭曲的增加,吸收光谱的Q条带变得更加红移,电化学均匀叶片间隙分别在1294nm和0.77eV中变小。 通过DFT计算研究了分子扭曲对电子性质的影响。

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