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二苯并噻吩嵌入杂卟啉的合成与性质。

Synthesis and Properties of Dibenzothiophene Embedded Heteroporphyrins.

机构信息

Indian Institute of Technology, Powai, Mumbai, 400076, India.

出版信息

J Org Chem. 2021 May 7;86(9):6100-6110. doi: 10.1021/acs.joc.0c02937. Epub 2021 Apr 20.

DOI:10.1021/acs.joc.0c02937
PMID:33876633
Abstract

A series of new stable dibenzothiophene embedded heteroporphyrins were synthesized in 6-7% yields by condensing 1 equiv of dibenzothiophene-based tripyrrane with 1 equiv of four different diols, 2,5-(hydroxymethyl)heterocycles (furan, thiophene, selenophene, and tellurophene), under mild acid-catalyzed conditions in CHCl. The formation of dibenzothiophene embedded heteroporphyrins was confirmed by high-resolution mass spectrometry and thoroughly characterized by 1D and 2D nuclear magnetic resonance (NMR) spectroscopy, absorption, electrochemical, and density functional theory/time-dependent density functional theory (DFT/TD-DFT) studies. The NMR studies indicated that the macrocycles were nonaromatic in nature. The electronic properties of the macrocycles were significantly altered as the heterocycle of the macrocycles was varied from furan to thiophene, selenophene, and tellurophene, as reflected clearly in the spectral and electrochemical properties. The macrocycles exhibited a sharp band in the region of 420-440 nm and a relatively broad absorption band(s) in the higher wavelength region of 550-800 nm. The oxa analogue was considerably blue-shifted as compared to the other macrocycles, whereas the tellura analogue exhibited relatively broadened and red-shifted absorption bands. Upon protonation of these macrocycles, the resulting diprotonated species displayed bathochromically shifted absorption bands, which were extended to the NIR region. DFT studies revealed that the macrocycles were highly distorted and strained and exhibited half chair conformation with restricted π-conjugation and confirmed their nonaromatic nature due to the lack of planarity of the macrocycle. TD-DFT studies were in agreement with the experimental spectral and electrochemical results.

摘要

一系列新的稳定的二苯并噻吩嵌入杂卟啉在温和的酸催化条件下,在 CHCl 中用 1 当量的二苯并噻吩基三吡咯烷与 1 当量的四种不同的二醇,2,5-(羟甲基)杂环(呋喃、噻吩、硒吩和碲吩)缩合,以 6-7%的产率合成。通过高分辨质谱证实了二苯并噻吩嵌入杂卟啉的形成,并通过一维和二维核磁共振(NMR)光谱、吸收、电化学和密度泛函理论/时间依赖密度泛函理论(DFT/TD-DFT)研究进行了彻底的表征。NMR 研究表明这些大环化合物本质上是非芳香族的。随着大环化合物中环的变化,从呋喃到噻吩、硒吩和碲吩,大环化合物的电子性质发生了显著的变化,这在光谱和电化学性质中表现得很明显。这些大环化合物在 420-440nm 区域显示出尖锐的带,在 550-800nm 的较高波长区域显示出相对较宽的吸收带。与其他大环化合物相比,氧杂类似物的蓝移相当大,而碲类似物的吸收带则较宽且红移。这些大环化合物质子化后,所得的二质子化物种的吸收带发生了红移,延伸到近红外区域。DFT 研究表明这些大环化合物高度扭曲和应变,呈现半椅式构象,限制了π-共轭,并由于大环的非平面性而证实了它们的非芳香性质。TD-DFT 研究与实验光谱和电化学结果一致。

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