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首页> 外文期刊>Journal of the Chemical Society. Perkin Transactions 2 >The autoxidation of aliphatic esters. Part 3. The reactions of alkoxyl and methyl radicals, from the thermolysis and photolysis of peroxides, with neopentyl esters
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The autoxidation of aliphatic esters. Part 3. The reactions of alkoxyl and methyl radicals, from the thermolysis and photolysis of peroxides, with neopentyl esters

机译:脂族酯的自氧化。第3部分。过氧化物的热解和光解中的烷氧基和甲基自由基与新戊酸酯的反应

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摘要

This paper reports a study of the dimerisation of ester radicals arising from the thermolysis and photolysis of di-tertbutyl peroxide (DTBPO) and dicumyl peroxide [DCPO, bis(alpha,alpha -dimethylbenzyl) peroxide] in neopentyl butanoate and a selection of structurally related neopentyl esters, in the temperature range 298 to 438 K. The acyl moieties of these esters were chosen to incorporate a variety of structural types to provide mechanistic information about the reactions. At 438 K, the thermolyses of DTBPO and DCPO in neopentyl butanoate give six ester radical dieters (three pairs of diastereoisomers). The two major diastereoisomers threo- and meso-dineopentyl 2,3-diethylbutanedioate have been prepared and the crystal structure of the meso compound determined. Interestingly, the dimer product distribution is independent of the peroxide used. By contrast, at 298 K more than twice as many dimers are observed and the product distributions from the two peroxides are no longer the same. Similar results are also observed for the other neopentyl esters. Evidence is presented to show that the ester radicals arise from hydrogen atom abstraction from the esters by alkoxyl and methyl radicals; the latter being formed by the fragmentation of the alkoxyls. At 438 K the dimer product distributions are determined predominantly by a thermodynamically controlled equilibrium of ester radicals prior to dimerisation. Lowering the temperature leads to the increased importance of kinetic effects in determining the product distribution. [References: 37]
机译:本文报道了在新戊酸丁酸酯中过氧化二叔丁基过氧化物(DTBPO)和过氧化二枯基[DCPO,双(α,α-二甲基苄基)过氧化物]的热解和光解引起的酯基的二聚化研究,以及与结构相关的选择新戊基酯,温度范围为298至438K。选择这些酯的酰基部分以结合各种结构类型,以提供有关反应的机理信息。在438 K下,丁酸新戊酯中DTBPO和DCPO的热解反应产生了6个酯自由基节育剂(3对非对映异构体)。制备了两种主要的非对映异构体2,3-二乙基丁二酸苏-和中-二戊戊基,并测定了内消旋化合物的晶体结构。有趣的是,二聚产物的分布与所使用的过氧化物无关。相比之下,在298 K时,观察到的二聚体多于两倍,并且两种过氧化物的产物分布不再相同。对于其他新戊基酯也观察到相似的结果。证据表明,酯基是由烷氧基和甲基从酯中夺取氢原子而产生的;后者是由烷氧基的断裂形成的。在438K,二聚产物分布主要由二聚之前的酯基的热力学控制平衡确定。降低温度导致动力学效应在确定产物分布中的重要性增加。 [参考:37]

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