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脂族酰基过氧化物分解动力学的分研究 III: 过氧化3,5,5-三甲基己酰在萃中的解动力学和机理
引用本文:雷学工,刘有成. 脂族酰基过氧化物分解动力学的分研究 III: 过氧化3,5,5-三甲基己酰在萃中的解动力学和机理[J]. 化学学报, 1983, 41(5): 441-447
作者姓名:雷学工  刘有成
作者单位:兰州大学化学系
摘    要:The kinetics of decomposition of 3, 5, 5-trimethylhexanoyl peroxide (1) in benzene has been studied at 30, 40 and 50`C and the cage effect of decomposition has been determined by scavenging method. The relative amounts of the main products of decomposition of 1 at 50`C with change of initial concentration have been determined. The results showed that the decomposition of 1 followed first plus three halves order kinetics as reported for lauroyl peroxide (2), but had a larger cage effect of 0.6. The mechanism of decomposition of 1 is practically the same as what we have proposed for 2. The faster rate and larger cage effect but less induced decomposition of 1 than that of 2 are attributed to the branching of the molecule of 1, especially to the presence of β-methyl group, which causes a larger entropy increase in the transition state.

关 键 词:反应动力学    分解反应  过氧化物  三甲基  酰基  

Studies on the kinetics of decomposition of acyl peroxide. III: Kinetics and mechanism of decomposition of 3,5,5 -tri-methylhexanoyl peroxide in benzene.
LEI XUEGONG,LIU YOUCHENG. Studies on the kinetics of decomposition of acyl peroxide. III: Kinetics and mechanism of decomposition of 3,5,5 -tri-methylhexanoyl peroxide in benzene.[J]. Acta Chimica Sinica, 1983, 41(5): 441-447
Authors:LEI XUEGONG  LIU YOUCHENG
Abstract:The kinetics of decomposition of 3, 5, 5-trimethylhexanoyl peroxide (1) in benzene has been studied at 30, 40 and 50`C and the cage effect of decomposition has been determined by scavenging method. The relative amounts of the main products of decomposition of 1 at 50`C with change of initial concentration have been determined. The results showed that the decomposition of 1 followed first plus three halves order kinetics as reported for lauroyl peroxide (2), but had a larger cage effect of 0.6. The mechanism of decomposition of 1 is practically the same as what we have proposed for 2. The faster rate and larger cage effect but less induced decomposition of 1 than that of 2 are attributed to the branching of the molecule of 1, especially to the presence of β-methyl group, which causes a larger entropy increase in the transition state.
Keywords:REACTION KINETICS  BENZENE  DECOMPOSITION REACTION  PEROXIDE  TRIMETHYL GROUP  ACYL GROUP
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