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首页> 外文期刊>Journal of the American Chemical Society >REACTIVITY OF RADICAL CATIONS - EFFECT OF RADICAL CATION AND ALKENE STRUCTURE ON THE ABSOLUTE RATE CONSTANTS OF RADICAL CATION MEDIATED CYCLOADDITION REACTIONS
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REACTIVITY OF RADICAL CATIONS - EFFECT OF RADICAL CATION AND ALKENE STRUCTURE ON THE ABSOLUTE RATE CONSTANTS OF RADICAL CATION MEDIATED CYCLOADDITION REACTIONS

机译:自由基的反应性-自由基和烯烃结构对自由基介导的荷载反应绝对速率常数的影响。

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Absolute rate constants for the reactions of styrene, 4-methylstyrene, 4-methoxystyrene, and beta-methyl-4-methoxystyrene radical cations with a series of alkenes, dienes, and enol ethers have been measured by laser flash photolysis. The measured rate constants correspond to either addition or electron transfer reactions, with the latter predominating when the oxidation potential of the alkene is lower than that of the styrene. The measured rate constants for the diene additions provide some of the first absolute kinetic data for the initial step in the synthetically-useful radical cation mediated Diels-Alder reaction. The addition reactions are sensitive to steric and electronic effects on both the radical cation and the alkene or diene. For example, the reactivity of the radical cations follows the general trend of 4-H > 4-CH3 > 4-CH3O > 4-CH3O-beta-CH3. The effects of alkyl substitution on the relative reactivity of alkenes toward styrene radical cations may be summarized as 1,2-dialkyl < 2-alkyl < trialkyl less than or equal to 2,2-dialkyl < tetraalkyl. The addition of the 4-methoxystyrene radical cation to a series of ring-substituted styrenes gives a reasonable Hammett correlation with a rho value of -5. Thus, the addition of radical cations to a variety of alkenes and dienes follows similar trends to those observed for the addition of other electrophiles, such as diarylcarbenium ions. The results are consistent with previous suggestions of a concerted pathway for radical cation mediated cycloaddition reactions, although direct spectroscopic evidence for the initial product radical cation is obtained only for the additions to substituted styrenes.
机译:苯乙烯,4-甲基苯乙烯,4-甲氧基苯乙烯和β-甲基-4-甲氧基苯乙烯自由基阳离子与一系列烯烃,二烯和烯醇醚的反应的绝对速率常数已通过激光快速光解法进行了测量。测得的速率常数对应于加成反应或电子转移反应,其中当烯烃的氧化电势低于苯乙烯的氧化电势时,后者占主导。二烯加成物的测得速率常数为合成有用的自由基阳离子介导的Diels-Alder反应中的初始步骤提供了一些第一绝对动力学数据。加成反应对自由基阳离子和烯烃或二烯的空间和电子效应均敏感。例如,自由基阳离子的反应性遵循4-H> 4-CH3> 4-CH3O>4-CH3O-β-CH3的一般趋势。烷基取代对烯烃相对于苯乙烯自由基阳离子的相对反应性的影响可以总结为:1,2-二烷基<2-烷基<三烷基小于或等于2,2-二烷基<四烷基。将4-甲氧基苯乙烯自由基阳离子加到一系列环取代的苯乙烯上可得到合理的Hammett相关性,rho值为-5。因此,向各种烯烃和二烯中添加自由基阳离子遵循与添加其他亲电试剂如二芳基碳鎓离子所观察到的趋势相似的趋势。该结果与先前关于自由基阳离子介导的环加成反应的协调途径的建议相一致,尽管仅在取代苯乙烯的添加中获得了初始产物自由基阳离子的直接光谱证据。

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