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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Addition vs Abstraction Reactions of the Methyl Radical with Nitrones, Alkenes, Aldehydes, and Imines
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Addition vs Abstraction Reactions of the Methyl Radical with Nitrones, Alkenes, Aldehydes, and Imines

机译:甲基自由基与硝基,烯烃,醛和亚胺的加成反应与抽象反应

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摘要

In continuation of our theoretical study of spin trapping, we have compared the abilities of nitrones, imines, aldehydes, and alkenes to add the methyl radical vs their tendency to have protons abstracted by this radical. This study confirms that for nitrones, whereas abstraction of the iminyl H is exothermic with a low activation energy, addition is even more favored, both thermodynamically and kinetically, with the addition occurring at the unsaturated carbon. For alkenes, the preferred process is also addition, but the reactions are considerably less exothermic and have higher activation energy barriers than those for nitrones. Aldehydes favor abstraction; the bulkier the group on the carbonyl carbon, the more the abstraction is preferred over addition. Imines are intermediate between alkenes and aldehydes in their tendency toward addition and abstraction. As a result, they can undergo either process, and the favored route entirely depends on the substituents present; moreover, addition can occur to either the carbon or the nitrogen with appropriate substituents.
机译:在继续对自旋俘获进行理论研究的基础上,我们比较了硝酮,亚胺,醛和烯烃添加甲基自由基的能力与质子被该自由基抽象化的趋势。这项研究证实,对于硝酮,亚胺基H的抽象是放热的,具有较低的活化能,而在热力学和动力学上,甚至更优选添加,且添加发生在不饱和碳上。对于烯烃,优选的方法也是加成,但是反应比硝酮的反应放热少并且具有更高的活化能垒。醛偏爱抽象;羰基碳上的基团越庞大,与加成相比,优选的抽象度越高。亚胺在它们的加成和抽象趋势中介于烯烃和醛之间。结果,它们可以经历任何一个过程,并且优选的途径完全取决于存在的取代基。此外,可以在具有适当取代基的碳或氮上进行加成。

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