首页> 外文期刊>Synthetic Metals >Novel peripherally substituted metal-free, zinc (II), and cobalt (II) phthalocyanines with 1,1 '-thiobis(2-napthol) and additional tetraphthalonitrile groups: Synthesis, aggregation behavior, electrochemical redox and electrocatalytic oxygen reducing properties
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Novel peripherally substituted metal-free, zinc (II), and cobalt (II) phthalocyanines with 1,1 '-thiobis(2-napthol) and additional tetraphthalonitrile groups: Synthesis, aggregation behavior, electrochemical redox and electrocatalytic oxygen reducing properties

机译:新型外周取代的无金属,锌(II)和钴(II)酞菁,具有1,1' - 硫双石(2-NaPthol)和另外的四丙腈基团:合成,聚集行为,电化学氧化还原和电催化氧还原性能

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摘要

Novel phthalocyanines containing only 1,1'-thiobis(2-napthol) groups or 1,1'-thiobis(2-napthol) and phthalonitrile groups at peripheral positions were prepared by nucleophilic displacement reaction through cyclotetramerization of phthalonitrile derivatives, benzo[b]dinaphtho [1,2-h:2',1'-e] [1,4,7] dioxathionine-5,6-dicarbonitrile and 4,4'- [thiobis(naphthalene-1,2-diyloxy)] diphthalonitrile in penthanol. The aggregation tendencies and electrochemical redox properties of all phthalocyanines were investigated on the basis of central metal, solvent medium and subsituent effects, using UV-Vis spectral and classical electroanalytical techniques. The compounds exhibited metal-and/or phthalocyanine ring-based electron transfer processes which were coupled by distinct spectral changes and thus, net color transformations pointing out the possibility for their usage in electrochromic applications. Furthermore, remarkable enhancement in catalytic activity towards oxygen reduction and high tolerance to methanol during this reaction have been observed when the zinc (II) or 2H center was replaced with cobalt (II).
机译:通过亲核置换反应,通过邻苯二甲腈衍生物的循环四聚集,通过亲核位移反应制备仅含有1,1'-硫双胞嘧啶(2-NaPthol)基团或1,1'-硫双胞胎(2-NaPthol)和酞氯基团的新型酞菁。 Dinaphtho [1,2-H:2',1'-e] [1,4,7]二恶肠-5,6-二羰基腈和4,4'- [硫磷(萘-1,2-二氧基)]二苯二甲腈戊烷。使用UV-Vis光谱和经典电扫描技术,研究了所有酞菁的聚集趋势和所有酞菁的电化学氧化还原性能。化合物显示出其通过不同的光谱变化耦合,因此,净色变换指出它们在电致变色应用程序的使用的可能性的金属和/或酞菁环系电子转移过程。此外,当用钴(II)替换锌(II)或2H中心时,已经观察到在该反应过程中对氧还原和对甲醇高耐氧高耐氧和高耐受的耐氧耐氧高耐受性的显着增强。

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