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Radical scavenging mechanism of phenol carboxylic acids: Reaction of protocatechuic esters

机译:苯酚羧酸的自由基清除机理:Protocatechuic酯的反应

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Solvent-dependency of the antiradical reaction of protocatechuic acid (3,4-dihydroxybenzoic acid, PA) and its esters has been investigated. In aprotic solvents, methyl protocatechuate (PAMe) was readily oxidized by two molar equivalents of DPPH radical and converted to protocatechuquinone methyl ester (PQMe). On the other hand, in alcoholic solvents such as methanol, PAMe rapidly consumed five radicals in 30 min and changed to complex oxidized mixtures. A~1H-NMR analysis of the reaction mixture of PAMe and DPPH radical in methanol showed that PAMe was rapidly converted to PQMe and its 3-hemiacetal. In addition, a signal of 2-methoxy-PQMe 3-hemiacetal was also detected in the reaction mixture. The results suggested that PQMe undergoes a nucleophilic attack by the solvent alcohol molecule at the C-2 of the ring in methanol, leading to a regeneration of catechol structure, which accounts well for the higher DPPH radical scavenging activity of PAMe in alcohols than in aprotic solvents.
机译:研究了原丁酸(3,4-二羟基苯甲酸,PA)及其酯的抗反应反应的溶剂依赖性。在非质子溶剂中,通过两种摩尔当量的DPPH自由基容易地氧化甲基,将甲基原型(PAME)氧化并转化为ProtocateChuinone甲酯(PQME)。另一方面,在含甲醇如甲醇的酒精溶剂中,碱在30分钟内快速消耗五个基团,并改变为复杂的氧化混合物。甲醇中碱基和DPPH基团的反应混合物的〜1H-NMR分析表明,碱基迅速转化为PQME及其3-Hemiagal。另外,在反应混合物中也检测到2-甲氧基-PQME 3-半缩醛的信号。结果表明,PQME在甲醇中的环中C-2的溶剂醇分子经过亲核侵蚀,导致儿茶酚结构的再生,这符合醇中碱度的DPPH自由基清除活性而不是非质子溶剂。

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