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首页> 外文期刊>Synthetic Metals >Synthesis, electrochemistry, spectroelectrochemistry and electrocolorimetry of phthalocyanine-anthraquinone hybrids
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Synthesis, electrochemistry, spectroelectrochemistry and electrocolorimetry of phthalocyanine-anthraquinone hybrids

机译:酞菁-蒽醌杂化物的合成,电化学,光谱电化学和比色法

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摘要

The tetra substituted metallophthalocyanines 2 and 3, soluble in common organic solvents, bearing four 2-(9,10-dioxo-9,10-dihydro-anthracen-2-yl-methyl)-maIonic acid diethyl ester functionalities were synthesized from the corresponding phthalodinitrile 1 and divalent metal salts at 170 °C in fused state. Reaction of with manganese (2+) acetate in n-pentanol led to the manganese (3+) phthalocyanine 4. Furthermore, the unsymmetrical copper phthalocyanine 5 containing one 2-(9,10-dioxo-9,10-dihydro-anthracen-2-yl-methyl)-malonic acid diethyl ester moiety was synthesized using a statistical approach. The new compounds were characterized by elemental analysis together with FT-IR, ~1H-NMR, ~(13)C-NMR, and UV-vis spectroscopy and via mass spectrometric analysis. The electrochemical, in situ spectroelec-trochemical, and in situ electrocolorimetric measurements represent that while MPcs give common ring-based and/or metal-based electron transfer processes, these processes were considerably affected with the redox processes of the AQ units attached to the phthalocyanine ring. At the same time attachments of the AQ units to the phthalocyanine rings improve the reversibility of the AQ. units due to the electron donor-acceptor interaction between the AQ units and phthalocyanine ring. The AQ units also alter the color states of the phthalocyanines.
机译:由相应的合成了四取代的金属酞菁2和3,它们可溶于常见的有机溶剂中,带有四个2-(9,10-dioxo-9,10-dihydro-蒽-2-基-甲基)-丙二酸二乙酯官能团邻苯二甲腈1和二价金属盐在170°C处于熔融状态。在正戊醇中,乙酸锰(2+)与乙酸反应生成锰(3+)酞菁4。此外,不对称铜酞菁5含有一个2-(9,10-dioxo-9,10-dihydro-蒽-使用统计方法合成2-基-甲基)-丙二酸二乙酯部分。这些新化合物通过元素分析,FT-IR,〜1H-NMR,〜(13)C-NMR和UV-vis光谱以及质谱分析进行表征。电化学,原位分光光度法和原位电比色法测量表明,虽然MPcs提供了常见的基于环和/或基于金属的电子转移过程,但这些过程受到与酞菁相连的AQ单元的氧化还原过程的影响。环。同时,将AQ单元连接到酞菁环上改善了AQ的可逆性。由于AQ单元和酞菁环之间的电子供体-受体相互作用,导致单元数增加。 AQ单元还会更改酞菁的颜色状态。

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