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N-nitrosoamide-mediated N -> O nitroso transfer to alcohols with subsequent denitroxylation

机译:N-亚硝基酰胺介导的N-> O亚硝基转移到醇中,随后进行脱氧羰基化

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Decomposition of certain N-benzyl-N-nitrosoamides is often accompanied by small amounts of benzaldehyde whose formation was postulated to arise from in situ formation and oxidation of benzyl alcohol. Incubation of excess benzyl alcohol with thermostable N-benzyl-N-nitrosoamides at ambient temperatures in inert solvents generates benzyl nitrite, N-benzyl amides, and benzaldehyde as the major products. Benzyl nitrite formation appears to be linked to N -> O nitroso transfer between the N-benzyl-N-nitrosoarnides and benzyl alcohol, which is subject to the previously observed electronic and steric features of the acyl substituent although the former appears to play a much larger role than the latter. Benzaldehyde formation evidently arises from dehydronitrosation (denitroxylation) of the nitrite via O-N bond homolysis and H-abstraction from the resultant benzyloxy radical. Although trans-nitrosation occurs with methanol, 1 degrees, 2 degrees, and 3 degrees alcohols, the reaction is evidently subject to steric effects at both the alpha and beta carbons of the alcohol. Additionally, carbonyl formation only occurs with 2 degrees alcohols and those that can derive resonance-stabilized carbonyls.
机译:某些N-苄基-N-亚硝基酰胺的分解通常伴随着少量的苯甲醛,其形成被认为是由于原位形成和苯甲醇的氧化而引起的。在环境温度下于惰性溶剂中将过量的苯甲醇与热稳定的N-苄基-N-亚硝基酰胺一起孵育,生成亚硝酸苄酯,N-苄基酰胺和苯甲醛作为主要产物。亚苄基亚苄基的形成似乎与N-苄基-N-亚硝基亚酰胺和苄醇之间的N→O亚硝基转移有关,尽管以前的酰基取代基似乎起着很大的作用,但后者受先前观察到的酰基取代基的电子和空间特征的影响。比后者更大的作用。苯甲醛的形成显然是由于亚硝酸盐通过O-N键均质分解和从所得苄氧基自由基中H脱氢而引起的亚硝化反应(脱氧羰基化)引起的。尽管反式亚硝化反应是在甲醇,1度,2度和3度的醇中进行的,但该反应显然在醇的α和β碳上都受到空间作用。此外,羰基的形成仅在2度的醇中发生,而那些醇可以衍生出共振稳定的羰基。

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