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Facile Synthesis and Electrochemical Evaluation of Coumarin-Tagged Pyridine and Thiophene Derivatives

机译:香豆素标记的吡啶和硫苯衍生物的便捷合成和电化学评估

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摘要

A series of coumarin pyridinethiones and pyridinones has been synthesized employing a range of substituted cyanothioacetamides and cyanoacetamides intermediates. Coumarin pyridinethiones and pyridinones bear different substituents including electron donating groups such as methyl, methoxy dimethylamine in addition to chloro, bromo and nitro as electron withdrawing groups were chosen to study the structure/ electrochemical relationship. The influence of electron donating group and electron withdrawing group on different positions of coumarin scaffold was studied utilizing cyclic voltammetry and controlled potential electrolysis at platinum and glassy carbon electrodes. The electrochemical redox mechanisms of synthesized coumarins were proposed and the oxidation and reduction pathways were determined. Data for cyclic voltammetry and controlled potential electrolysis proved that amine center served as the oxidation center, while thiocarbonyl and carbonyl groups were identified as the reduction centers.
机译:一系列使用一系列取代的氰基乙酰酰胺和氰基乙酰氨酰胺中间体的香豆素吡啶酮和吡啶酮已经合成。香豆素吡啶二酮和吡啶酮具有不同的取代基,包括电子捐赠基,例如甲基,甲氧基二甲胺除外,除了氯氯,Bromo和Nitro外,还选择了电子撤回基团,以研究结构/电化学关系的结构/电化学关系。通过循环伏安法和铂和玻璃碳电极的循环电位电解,研究了电子捐赠组和电子撤回组对香豆素支架不同位置的影响。提出了合成香豆素的电化学氧化还原机制,并确定了氧化和还原途径。循环伏安法和控制电势的数据证明,胺中心用作氧化中心,而硫代苯甲和羰基则被确定为还原中心。

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