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近红外吸收的非芳香族核心修饰的 -苯并六氮杂卟啉(1...1.1.1)s

Near-infrared absorbing nonaromatic core-modified -benzicalixhexaphyrin(1...1.1.1)s.

作者信息

Varak Pooja, Ravikanth Mangalampalli

机构信息

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.

出版信息

Org Biomol Chem. 2024 Mar 13;22(11):2231-2240. doi: 10.1039/d4ob00095a.

Abstract

Stable nonaromatic core-modified -benzicalixhexaphyrins containing one -phenylene ring, four pyrrole rings and one heterocyclic ring such as furan, thiophene, selenophene and telluorophene connected four -sp carbons and two -sp carbons in a macrocyclic framework were synthesized. The -benzitripyrrane dicarbinol was condensed with 16-heterocycle tripyrranes under mild acid-catalyzed and inert conditions followed by open-air oxidation with DDQ to obtain macrocycles in 2-5% yields. The presence of two -OH groups in the -orientation at two different -sp carbons, which are adjacent to the -phenylene ring of the macrocycle, was confirmed through detailed 1D and 2D NMR studies. NMR studies indicated that the heterocyclic ring present across the -phenylene ring prefers to be in the inverted conformation in these macrocycles. The macrocycles exhibited two intense absorption bands in the lower wavelength region of 320-580 nm and one broad absorption band that extended from the visible to NIR region, and the protonated derivatives of such macrocycles showed significant bathochromic shifts to the NIR region. Additionally, the electrochemical studies indicated that the macrocycles underwent easier oxidation due to their electron-rich nature. DFT studies revealed that the macrocycles adopted highly distorted conformation, which was consistent with experimental results.

摘要

合成了稳定的非芳香族核心修饰的-苯并六卟啉,其在大环骨架中含有一个亚苯基环、四个吡咯环和一个杂环,如呋喃、噻吩、硒吩和碲吩,它们连接四个sp碳和两个sp碳。在温和的酸催化和惰性条件下,将-苯并三吡咯二醇与1,6-杂环三吡咯缩合,然后用DDQ进行空气氧化,以2-5%的产率获得大环化合物。通过详细的一维和二维核磁共振研究证实,在大环化合物中,与亚苯基环相邻的两个不同sp碳上存在两个处于-取向的-OH基团。核磁共振研究表明,横跨亚苯基环的杂环在这些大环化合物中更倾向于处于反式构象。大环化合物在320-580nm的较低波长区域表现出两个强吸收带,以及一个从可见光区域延伸到近红外区域的宽吸收带,并且此类大环化合物的质子化衍生物向近红外区域显示出明显的红移。此外,电化学研究表明,大环化合物由于其富电子性质而更容易发生氧化。密度泛函理论研究表明,大环化合物采用高度扭曲的构象,这与实验结果一致。

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