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单线态氧促进二苄基硫醚和叔二苄基胺中碳-杂原子键的断裂。结构效应及激基复合物的作用。

Singlet oxygen promoted carbon-heteroatom bond cleavage in dibenzyl sulfides and tertiary dibenzylamines. Structural effects and the role of exciplexes.

作者信息

Baciocchi Enrico, Del Giacco Tiziana, Lanzalunga Osvaldo, Lapi Andrea

机构信息

Dipartimento di Chimica and Centro di Eccellenza Materiali Innovativi Nanostrutturati, Università di Perugia, via Elce di sotto 8, 06123 Perugia, Italy.

出版信息

J Org Chem. 2007 Dec 7;72(25):9582-9. doi: 10.1021/jo701641b. Epub 2007 Nov 15.

Abstract

The C-heteroatom cleavage reactions of substituted dibenzyl sulfides and substituted dibenzylcyclohexylamines promoted by singlet oxygen in MeCN have been investigated. In both systems, the cleavage reactions (leading to benzaldehyde and substituted benzaldehyde) were slightly favored by electron-withdrawing substituents with rho values of +0.47 (sulfides) and +0.27 (amines). With dibenzyl sulfides, sulfones were also obtained whereas sulfoxide formation became negligible when the reactions were carried out in the presence of a base. Through a careful product study for the oxidation of dibenzyl sulfide, in the presence and in the absence of Ph2SO, it was established that sulfone and cleavage product (benzaldehyde) do not come by the same route (involving the persulfoxide and the hydroperoxysulfonium ylide) as required by the generally accepted mechanism (Scheme 1) for C-heteroatom cleavage reactions of sulfides promoted by singlet oxygen. On this basis and in light of the similar structural effects noted above it is suggested that dibenzyl sulfides and dibenzylamines form benzaldehydes by a very similar mechanism. The reaction with singlet oxygen leads to an exciplex that can undergo an intracomplex hydrogen atom transfer to produce a radical pair. With sulfides, collapse of the radical pair leads to an alpha-hydroperoxy sulfide than can give benzaldehyde by an intramolecular path as described in Scheme 3. With amines, the radical pair undergoes an electron-transfer reaction to form an iminium cation that hydrolyzes to benzaldehyde. From a kinetic study it has been established that the fraction of exciplex converted to aldehyde is ca. 20% with sulfides and ca. 7% with amines.

摘要

研究了单线态氧在乙腈中促进的取代二苄基硫醚和取代二苄基环己胺的C-杂原子裂解反应。在这两个体系中,吸电子取代基对裂解反应(生成苯甲醛和取代苯甲醛)略有促进作用,ρ值分别为+0.47(硫醚)和+0.27(胺)。对于二苄基硫醚,还会生成砜,而当反应在碱存在下进行时,亚砜的形成可忽略不计。通过对二苄基硫醚氧化反应在有无二苯亚砜情况下的仔细产物研究,确定砜和裂解产物(苯甲醛)并非通过单线态氧促进的硫醚C-杂原子裂解反应的普遍接受机制(方案1)所要求的相同途径(涉及过硫氧化物和氢过氧硫鎓叶立德)生成。基于此,并鉴于上述类似的结构效应,表明二苄基硫醚和二苄基胺通过非常相似的机制形成苯甲醛。与单线态氧的反应会产生一个激基复合物,该复合物可进行分子内氢原子转移以产生一个自由基对。对于硫醚,自由基对的分解会产生一个α-氢过氧硫醚,它可以通过方案3中所述的分子内途径生成苯甲醛。对于胺,自由基对会发生电子转移反应形成亚胺阳离子,该阳离子水解生成苯甲醛。通过动力学研究确定,激基复合物转化为醛的比例,硫醚约为20%,胺约为7%。

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