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通过双轴锡(IV)-卟啉酚盐与铜阳离子螯合获得具有可控荧光的新型聚卟啉阵列。

New Polyporphyrin Arrays with Controlled Fluorescence Obtained by Diaxial Sn(IV)-Porphyrin Phenolates Chelation with Cu Cation.

作者信息

Mamardashvili Galina M, Lazovskiy Dmitriy A, Khodov Ilya A, Efimov Artem E, Mamardashvili Nugzar Z

机构信息

G.A. Krestov Institute of Solution Chemistry of Russian Academy of Sciences, Akademicheskaya st. 1, 153045 Ivanovo, Russia.

出版信息

Polymers (Basel). 2021 Mar 8;13(5):829. doi: 10.3390/polym13050829.

Abstract

New coordination oligomers and polymers of Sn(IV)-tetra(4-sulfonatophenyl)porphyrin have been constructed by the chelation reaction of its diaxialphenolates with Cu. The structure and properties of the synthesized polyporphyrin arrays were investigated by H Nuclear Magnetic Resonance (H NMR), Infra Red (IR), Ultra Violet - Visible (UV-Vis) and fluorescence spectroscopy, mass spectrometry, Powder X-Rays Diffraction (PXRD), Electron Paramagnetic Resonance (EPR), thermal gravimetric, elemental analysis, and quantum chemical calculations. The results show that the diaxial coordination of bidentate organic ligands (L-tyrazine and diaminohydroquinone) leads to the quenching of the tetrapyrrole chromophore fluorescence, while the chelation of the porphyrinate diaxial complexes with Cu is accompanied by an increase in the fluorescence in the organo-inorganic hybrid polymers formed. The obtained results are of particular interest to those involved in creating new 'chemo-responsive' (i.e., selectively interacting with other chemical species as receptors, sensors, or photocatalysts) materials, the optoelectronic properties of which can be controlled by varying the number and connection type of monomeric fragments in the polyporphyrin arrays.

摘要

通过其四(4-磺酸基苯基)卟啉的双轴酚盐与铜的螯合反应,构建了新型的锡(IV)-四(4-磺酸基苯基)卟啉配位低聚物和聚合物。通过氢核磁共振(H NMR)、红外(IR)、紫外-可见(UV-Vis)和荧光光谱、质谱、粉末X射线衍射(PXRD)、电子顺磁共振(EPR)、热重分析、元素分析以及量子化学计算,对合成的聚卟啉阵列的结构和性质进行了研究。结果表明,双齿有机配体(L-酪氨酸和二氨基对苯二酚)的双轴配位导致四吡咯发色团荧光猝灭,而卟啉二轴配合物与铜的螯合伴随着所形成的有机-无机杂化聚合物中荧光的增强。所得结果对于那些致力于创造新型“化学响应性”(即作为受体、传感器或光催化剂与其他化学物质选择性相互作用)材料的人特别有意义,这些材料的光电性质可以通过改变聚卟啉阵列中单体片段的数量和连接类型来控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e3a/7962819/ae4c95648488/polymers-13-00829-g001.jpg

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