首页> 外文期刊>Tetrahedron letters: The International Journal for the Rapid Publication of Preliminary Communications in Organic Chemistry >A study on the reactions of NADH models with electron-deficient alkenes. A probe for the extreme of concerted electron-hydrogen atom transfer mechanism
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A study on the reactions of NADH models with electron-deficient alkenes. A probe for the extreme of concerted electron-hydrogen atom transfer mechanism

机译:NADH模型与缺电子烯烃的反应的研究。协同电子-氢原子转移机理的探究

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摘要

The reactions of 9-fluorenylidenemalononitrile (FDCN) and 1,1-diphenyl-2,2-dicyanoethylene (DPCN) with Hantzsch ester (HEH), N-methyl Hantzsch ester (Me-HEH), and 1-benzyl-1,4-dihydronicotinamide (BNAH) in oxygen-saturated acetonitrile have been studied. The aerobic reactions with HEH give solely reduction products. However, reactions with Me-HEH and BNAH not only result in reduction products, but also give varying amounts of oxidation products. The amount of oxidation product appears to be related to the electronic character and bulkiness of reactants. We propose that all these reactions follow a general mechanism of concerted electron-hydrogen atom transfer mechanism. If the electron-transfer complex is very tight, only 'concerted hydride transfer reaction' occurs. However, if the electron-transfer complex is not so tight, oxygen can capture the radicaloid intermediate to result in oxidation products.
机译:9-芴基亚甲基丙二腈(FDCN)和1,1-二苯基-2,2-二氰基乙烯(DPCN)与Hantzsch酯(HEH),N-甲基Hantzsch酯(Me-HEH)和1-苄基1,4的反应已经研究了氧饱和乙腈中的β-二氢神经酰胺(BNAH)。与HEH的需氧反应仅产生还原产物。但是,与Me-HEH和BNAH的反应不仅会产生还原产物,而且还会产生不同数量的氧化产物。氧化产物的量似乎与电子特性和反应物的体积有关。我们建议所有这些反应遵循协调的电子-氢原子转移机理的一般机理。如果电子转移络合物非常紧密,则仅发生“约定的氢化物转移反应”。但是,如果电子传递络合物不是那么紧密,则氧气会捕获自由基型中间体,从而导致氧化产物。

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