OXIDATION BY METAL SALTS .3. REACTION OF MANGANIC ACETATE WITH AROMATIC HYDROCARBONS AND REACTIVITY OF CARBOXYMETHYL RADICAL

被引:221
作者
HEIBA, EI
DESSAU, RM
KOEHL, WJ
机构
[1] Mobil Research, Development Corporation, Central Research Division, Princeton
[2] Applied Research, Development Division, Paulsboro
关键词
D O I
10.1021/ja01029a028
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The manganic acetate oxidation of aromatic hydrocarbons proceeds by two competing mechanisms: (a) a free-radical mechanism resulting from the interaction of the aromatic hydrocarbon with the carboxymethyl radical (· CH2COOH) generated directly by the thermolysis of manganic acetate ; (b) an electron transfer mechanism which is of importance in the oxidation of aromatic hydrocarbons having ionization potentials of ≤8 eV. The relative extent of the electron transfer pathway can be suppressed by carrying out the reaction under anhydrous conditions or in the presence of potassium acetate. The relative reactivity of the carboxymethyl radical toward hydrogen abstraction from substituted toluenes was determined yielding a p value of –0.63 (correlated with σ+). The observed relative rate ratio of hydrogen atom abstraction from toluene-diphenylmethane-triphenylmethane is 1:12:39, respectively. A study of the relative rates of addition of the CH2COOH radical to substituted benzenes revealed that the reactivity toward addition is guided by the stability of the radical intermediate irrespective of whether the groups are electron withdrawing or electron donating. © 1969, American Chemical Society. All rights reserved.
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页码:138 / &
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