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The Reactions of Ethyl Radicals

机译:乙基自由基的反应

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The photochemical investigation of the decompositions of diethyl zinc and diethyl mercury has established that the products in each case consist principally of ethane, ethylene, and butane, with smaller amounts of hydrogen and butylene. The composition of the product varies with the alkyl, but does not change markedly with temperature from 45° to 250°. An examination of the effects of varying the concentration, intensity of radiation, packing of reaction vessel, and inert gas pressure leads to the conclusion that butane is formed by the combination of two ethyl radicals produced in the primary process, while ethane and ethylene arise from a reaction between ethyl radicals and metal alkyl molecules. The reaction between ethyl radicals and hydrogen becomes measurable at about 160°, and by analogy with the corresponding process with methyl radicals may be assigned an activation energy of 9±2 kcal. The reaction C2H5+H=2CH3proceeds rapidly at 100°. The investigation of the photolysis of ethyl iodide in the presence of mercury vapor and the mercury photosensitized hydrogenation of ethylene supports the conclusions based on the metal alkyl studies.
机译:对二乙基锌和二乙基汞分解的光化学研究表明,每种情况下的产物主要由乙烷、乙烯和丁烷组成,氢气和丁烯含量较少。产品的成分随烷基而变化,但在45°至250°的温度下没有明显变化。通过研究改变浓度、辐射强度、反应容器的填充和惰性气体压力的影响,可以得出以下结论:丁烷是由初级工艺中产生的两种乙基自由基结合形成的,而乙烷和乙烯是由乙基自由基和金属烷基分子之间的反应产生的。乙基自由基和氢之间的反应在大约160°左右变得可测量,并且通过类比与甲基自由基的相应过程,可以分配9±2 kcal的活化能。反应C2H5+H=2CH3 在100°下快速进行。对汞蒸气存在下碘乙烷的光解和乙烯的汞光敏加氢反应的研究支持了基于金属烷基研究的结论。

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