2020
DOI: 10.1002/slct.202001055
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Unexpected Cleavage of N‐N Bonds of Pentafluorophenylhydrazones – Formation of Nitriles by a Radical Fragmentation Reaction

Abstract: A novel method of the preparation of (hetero)aryl nitriles based on the fragmentation of the corresponding pentafluorophenylhydrazones is described. The synthesis is metal‐free, proceeds in neutral conditions with no need of protecting group application and provides most nitriles in moderately good yields. The synthesis was performed on ten pentafluorophenylhydrazones with different functional groups within the carbonyl part – the reaction was found to be partially substrate selective. The reaction prefers sub… Show more

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Cited by 1 publication
(4 citation statements)
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“…Studied aromatic and heteroaromatic derivatives of pentafluorophenylhydrazones 1 present one principal fragmentation occurring after breaking the N–N bond of the hydrazone bridge, which is not typical for aliphatic analogues. This fact confirms our experimental results of the reaction of the title pentafluorophenylhydrazones with anions, which give us similar products and also parallel nucleophilic substitution of the fluorine atom in position 4 9 …”
Section: Resultssupporting
confidence: 90%
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“…Studied aromatic and heteroaromatic derivatives of pentafluorophenylhydrazones 1 present one principal fragmentation occurring after breaking the N–N bond of the hydrazone bridge, which is not typical for aliphatic analogues. This fact confirms our experimental results of the reaction of the title pentafluorophenylhydrazones with anions, which give us similar products and also parallel nucleophilic substitution of the fluorine atom in position 4 9 …”
Section: Resultssupporting
confidence: 90%
“…From this point of view, we can consider the influence of the strong electron‐withdrawing effect of the pentafluorophenyl nucleus onto –NH–NCH– fragment substituted from the opposite side with alkyl, aryl, electron‐rich five‐membered heteroaryl nuclei bearing various substituents in different positions. Such hydrazones 1 were prepared from logical components, but their chemical reaction with azide or cyanide anion, respectively, gave surprisingly unexpected products, 2,3,5,6‐tetrafluorophenylaniline and corresponding nitrile 9 . Thus, breaking of the NH–N is the crucial moment to study the behavior of the title molecules.…”
Section: Resultsmentioning
confidence: 99%
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