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硫杂卟啉嗪衍生物的合成、电化学及光化学性质。

Synthesis, Electrochemical and Photochemical Properties of Sulfanyl Porphyrazine with Ferrocenyl Substituents.

机构信息

Department of Medicinal Chemistry, Collegium Medicum in Bydgoszcz, Faculty of Pharmacy, Nicolaus Copernicus University in Torun, A. Jurasza 2, 85-089 Bydgoszcz, Poland.

Institute of Chemistry and Technical Electrochemistry, Poznan University of Technology, Berdychowo 4, 60-965 Poznan, Poland.

出版信息

Molecules. 2023 Jul 5;28(13):5215. doi: 10.3390/molecules28135215.

Abstract

Ferrocene is useful in modern organometallic chemistry due to its versatile applications in material sciences, catalysis, medicinal chemistry, and diagnostic applications. The ferrocene moiety can potentially serve many purposes in therapeutics and diagnostics. In the course of this study, (6-bromo-1-oxohexyl)ferrocene was combined with dimercaptomaleonitrile sodium salt to yield a novel maleonitrile derivative. Subsequently, this compound was subjected to an autocyclotetramerization reaction using the Linstead conditions in order to obtain an octaferrocenyl-substituted magnesium(II) sulfanyl porphyrazine. Following that, both compounds-the maleonitrile derivative and the porphyrazine derivative-were subjected to physicochemical characterization using UV-Vis, ES-TOF, MALDI-TOF, and one-dimensional and two-dimensional NMR spectroscopy. Moreover, the sulfanyl porphyrazine was subjected to various photophysical studies, including optical absorption and emission measurements, as well as the evaluation of its photochemical properties. Values of singlet oxygen generation quantum yields were obtained in different organic solvents. The electrochemical properties of the synthesized compounds were studied using cyclic voltammetry. According to the electrochemical results, the presence of electron-withdrawing oxohexyl groups attached to ferrocene afforded significantly more positive oxidation potentials of the ferrocene-based redox process up to 0.34 V vs. Fc/Fc.

摘要

二茂铁在现代有机金属化学中很有用,因为它在材料科学、催化、药物化学和诊断应用等方面有广泛的应用。茂铁部分在治疗学和诊断学中可能有多种用途。在本研究中,(6-溴-1-氧代己基)二茂铁与二巯基马来腈钠盐结合,得到一种新型的马来腈衍生物。随后,该化合物在林斯特德条件下进行自环三聚反应,以获得八茂铁取代的镁(II)硫代卟啉。之后,用紫外-可见光谱、ES-TOF、MALDI-TOF、一维和二维 NMR 光谱对两种化合物——马来腈衍生物和卟啉衍生物——进行了理化特性表征。此外,对硫代卟啉进行了各种光物理研究,包括光学吸收和发射测量,以及光化学性质的评估。在不同的有机溶剂中获得了单线态氧生成量子产率的值。用循环伏安法研究了合成化合物的电化学性质。根据电化学结果,二茂铁上的吸电子氧代己基的存在使基于二茂铁的氧化还原过程的氧化电位显著正移,达到 0.34 V 相对于 Fc/Fc。

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