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Reactions of Diazomethanes with 5‐Benzylidene‐3‐phenylrhodanine – A Computational Study
Authors:Alexander F Khlebnikov  Martin S Seyfried  Heinz Heimgartner
Institution:1. Institute of Chemistry, Saint Petersburg State University, Universitetskii pr. 26, RU‐198504 St. Petersburg, (phone: +7‐812‐4289344;2. fax: +7‐812‐4286939);3. Department of Chemistry, University of Zürich, Winterthurerstrasse 190, CH‐8057 Zürich, (phone: +41‐44‐6354282;4. fax: +41‐44‐6356812)
Abstract:It has been shown previously that the reaction of diazomethane with 5‐benzylidene‐3‐phenylrhodanine ( 1 ) in THF at ?20° occurs at the exocyclic C?C bond via cyclopropanation to give 3a and methylation to yield 4 , respectively, whereas the corresponding reaction with phenyldiazomethane in toluene at 0° leads to the cyclopropane derivative 3b exclusively. Surprisingly, under similar conditions, no reaction was observed between 1 and diphenyldiazomethane, but the 2‐diphenylmethylidene derivative 5 was formed in boiling toluene. In the present study, these results have been rationalized by calculations at the DFT B3LYP/6‐31G(d) level using PCM solvent model. In the case of diazomethane, the formation of 3a occurs via initial Michael addition, whereas 4 is formed via 3+2] cycloaddition followed by N2 elimination and H‐migration. The preferred pathway of the reaction of 1 with phenyldiazomethane is a 3+2] cycloaddition, subsequent N2 elimination and ring closure of an intermediate zwitterion to give 3b . Finally, the calculations show that the energetically most favorable reaction of 1 with diphenyldiazomethane is the initial formation of diphenylcarbene, which adds to the S‐atom to give a thiocarbonyl ylide, followed by 1,3‐dipolar electrocyclization and S‐elimination.
Keywords:Cycloadditions  Diazomethanes  Reaction mechanisms  Rhodanine  5‐benzylidene‐3‐phenyl‐  Density‐functional theory (DFT)
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