How Different Are Nitrile Oxides from Nitrones in zw-type [3 + 2] Cycloaddition Reactions? A Molecular Electron
Luis R Domingo1, Patricia Pérez2
1Avd. Tirso de Molina 20, 46015 Valencia, Spain.
Abstract:
Using the molecular electron density theory, the zw-type [3 + 2] cycloaddition (32CA) reactions of three benzonitrile oxides (BNOs) with several ethylenes, exhibiting different nucleophilic/electrophilic activation, have been studied to establish their poor reactivity. ELF topological analysis of the three BNOs reveals that the para substitution on the benzene ring does not affect the electron density distribution on the CNO frameworks. According to a DFT-based reactivity indices analysis, the nonsubstituted BNO is a moderate electrophile and a moderate nucleophile, which accounts for its poor reactivity in polar reactions. The activation energy analysis of the 32CA reactions of the nonsubstituted BNO allows us to establish that it reacts more effectively with strongly nucleophilic ethylenes than strongly electrophilic ones. Additionally, while the 32CA reactions with nucleophilic ethylenes are entirely ortho regioselective, those with electrophilic ethylenes are poor meta regioselective. A relative interacting atomic energy analysis of these 32CA reactions confirms the establishment of participation of these BNOs in zw-type 32CA reactions. The electrophilic BNO framework stabilization in 32CA reactions with supernucleophilic ethylenes is stronger than that of the ethylene framework in reactions with strong electrophilic ethylenes, which explains the higher reactivity of BNOs toward supernucleophilic ethylenes.
More Related Videos
Related Concept Videos
Nitrosation of Enols
Preparation of Amines: Reduction of Oximes and Nitro Compounds
Though catalytic hydrogenation can reduce nitrobenzenes, the reduction is nonselective in the presence of other functional groups. For instance, if nitrobenzene contains an aldehyde group,...
Preparation of Nitriles
1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Overview
The nitrous acid is unstable. Hence, it is formed in situ from a solution of sodium nitrite and cold aqueous acids such as hydrochloric or sulfuric acid. In an acidic solution, the –OH group of nitrous acid undergoes protonation to give oxonium ion, followed by...
Structures of Carboxylic Acid Derivatives
Carboxylic acid derivatives contain an acyl group attached to a heteroatom such as chlorine, oxygen, or nitrogen. The carbonyl carbon and oxygen are both sp2-hybridized with an unhybridized p orbital.
The three sp2 orbitals of the carbonyl carbon form three σ bonds, one each with the carbonyl oxygen, the α carbon, and the heteroatom, whereas the other two sp2 orbitals of the carbonyl oxygen are occupied by the lone pairs. Further, the...
2° Amines to N-Nitrosamines: Reaction with NaNO2


