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The generation of hydroxyl and alkoxyl radicals from the interaction of ferrous bipyridyl with peroxides.

机译:从联吡啶亚铁与过氧化物的相互作用中产生羟基和烷氧基。

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摘要

Reaction conditions by which the iron-chelate ferrous bipyridyl can be used as a Fenton reagent to generate specifically alkoxyl radical (.OR) from its corresponding alkyl hydroperoxide (ROOH) without producing hydroxyl radical (.OH) as a result of autoxidation are described. In this manner, the relative ability of common .OH-scavenging agents to react with .OH and various .OR species could be assessed. When .OH was generated from H2O2, 4-methylmercapto-2-oxobutyrate, ethanol and benzoate all were oxidized. When .OR (cumoxyl radical, t-butoxyl radical or ethoxyl radical) was generated specifically, each was found to oxidize 4-methylmercapto-2-oxobutyrate and ethanol. In contrast with .OH, however, none of the .OR radicals mediated the decarboxylation of benzoate. Cross-competition studies with the scavengers showed that, in contrast with the .OH-dependent reaction, the .OR-dependent oxidation of 4-methylmercapto-2-oxobutyrate and ethanol was not inhibited by benzoate. Rate constants for ferrous bipyridyl oxidation by ROOH and by H2O2 were found to be essentially the same, and therefore the differential oxidation of the various scavengers was not a reflection of iron-peroxide interaction, but rather an interaction between generated oxy radicals and the scavengers. In contrast with the H2O2 system, catalase did not inhibit the oxidation of 4-methylmercapto-2-oxobutyrate or ethanol by either the cumene hydroperoxide or the t-butyl hydroperoxide system, suggesting that the oxidizing species was not derived from H2O2. These results suggest that benzoate decarboxylation might serve as a more specific probe to detect the presence of .OH than either 4-methylmercapto-2-oxobutyrate or ethanol, which react readily with .OR.
机译:描述了一种反应条件,铁螯合物亚铁联吡啶可以用作Fenton试剂,由其相应的烷基氢过氧化物(ROOH)生成特定的烷氧基(.OR),而不会由于自氧化作用而产生羟基(.OH)。以这种方式,可以评估常见的.OH清除剂与.OH和各种.OR物质反应的相对能力。当由过氧化氢生成.OH时,4-甲基巯基-2-氧代丁酸酯,乙醇和苯甲酸酯均被氧化。具体而言,当产生.OR(异丙氧基,叔丁氧基或乙氧基)时,发现它们各自都氧化了4-甲基巯基-2-氧代丁酸酯和乙醇。然而,与.OH相反,没有任何.OR基团介导苯甲酸酯的脱羧。与清除剂的交叉竞争研究表明,与.OH依赖的反应相反,4-甲基巯基-2-氧代丁酸和乙醇的.OR依赖氧化不受苯甲酸酯的抑制。发现ROOH和H2O2氧化亚铁双吡啶基的速率常数基本相同,因此各种清除剂的差异氧化反应不是过氧化铁相互作用的反映,而是生成的氧自由基与清除剂之间的相互作用的反映。与H2O2系统相反,过氧化氢酶不抑制异丙苯氢过氧化物或叔丁基氢过氧化物系统对4-甲基巯基-2-氧代丁酸或乙醇的氧化,表明该氧化物种并非源自H2O2。这些结果表明,与4-甲基巯基-2-氧代丁酸酯或乙醇较易与.OR反应的苯甲酸酯脱羧作用可能是检测.OH的更特异性探针。

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