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核心修饰的五吡咯(2.1.1.1.1)和双(二氟硼烷)配合物:合成、结构以及光谱和氧化还原性质

Core-Modified Pentaphyrins(2.1.1.1.1) and Bis(difluoroborane) Complex: Synthesis, Structure, and Spectral and Redox Properties.

作者信息

Panda Kamakshya Nath, Thorat Kishor G, Ravikanth Mangalampalli

机构信息

Department of Chemistry, Indian Institute of Technology (IIT) Bombay, Mumbai 400 076, India.

出版信息

Inorg Chem. 2020 Mar 16;59(6):3585-3595. doi: 10.1021/acs.inorgchem.9b02905. Epub 2020 Feb 24.

Abstract

A series of hetero analogues of pentaphyrins(2.1.1.1.1) such as oxapentaphyrins(2.1.1.1.1) and thiapentaphyrins(2.1.1.1.1) were synthesized by 3 + 2 condensation of dipyrroethenedicarbinol with 16-oxatripyrrane/16-thiatripyrrane under mild acid-catalyzed reaction conditions. The stable macrocycles are freely soluble in organic solvents, and their identities were confirmed by a corresponding molecular-ion peak in high-resolution mass spectrometry, 1D and 2D NMR spectroscopy, and X-ray structure obtained for one of the oxapentaphyrin(2.1.1.1.1) macrocycles. The crystal structure and NMR studies indicated that the heterocyclic ring, such as furan in oxapentaphyrins(2.1.1.1.1) and thiophene in thiapentaphyrins(2.1.1.1.1), was inverted. In absorption spectra, the macrocycles showed one sharp band at ∼516 nm and one broad band at ∼744 nm. The spectral and X-ray studies supported the nonaromatic nature of these macrocycles. This is in contrast to the recently reported aza analogue of pentaphyrins(2.1.1.1.1), which showed antiaromatic behavior. Upon protonation, the core-modified pentaphyrins(2.1.1.1.1) macrocycles exhibited bathochromically shifted absorption bands with a distinct change in the color of the solution. The H NMR, nucleus-independent chemical shift, and anisotropy-induced current density studies indicated the presence of Mobius aromaticity in the protonated macrocycles. The core-modified pentaphyrins(2.1.1.1.1) can act as good coordinating ligands, as shown here by synthesizing a bis(difluoroborane) complex of one of the thiapentaphyrins(2.1.1.1.1).

摘要

通过二吡咯乙烯二醇与16 - 氧杂三吡咯/16 - 硫杂三吡咯在温和的酸催化反应条件下进行3 + 2缩合反应,合成了一系列五吡咯(2.1.1.1.1)的杂原子类似物,如氧杂五吡咯(2.1.1.1.1)和硫杂五吡咯(2.1.1.1.1)。这些稳定的大环化合物可自由溶于有机溶剂,其结构通过高分辨率质谱中的相应分子离子峰、一维和二维核磁共振光谱以及对其中一种氧杂五吡咯(2.1.1.1.1)大环化合物获得的X射线结构得以确认。晶体结构和核磁共振研究表明,杂环,如氧杂五吡咯(2.1.1.1.1)中的呋喃环和硫杂五吡咯(2.1.1.1.1)中的噻吩环,是反转的。在吸收光谱中,这些大环化合物在约516 nm处显示出一个尖锐的吸收带,在约744 nm处显示出一个宽吸收带。光谱和X射线研究支持了这些大环化合物的非芳香性本质。这与最近报道的五吡咯(2.1.1.1.1)的氮杂类似物形成对比,后者表现出反芳香行为。质子化后,核心修饰的五吡咯(2.1.1.1.1)大环化合物的吸收带发生红移,溶液颜色发生明显变化。氢核磁共振、核独立化学位移和各向异性诱导电流密度研究表明,质子化的大环化合物中存在莫比乌斯芳香性。如本文通过合成一种硫杂五吡咯(2.1.1.1.1)的双(二氟硼烷)配合物所示,核心修饰的五吡咯(2.1.1.1.1)可以作为良好的配位配体。

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