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Mechanistic Aspects on [3+2] Cycloaddition (32CA) Reactions of Azides to Nitroolefins: A Computational and Kinetic Study
Authors:Dr Meire Y Kawamura  Dr Juan V Alegre-Requena  Dr Thaís M Barbosa  Prof Dr Cláudio F Tormena  Prof Dr Robert S Paton  Prof Dr Marco A B Ferreira
Institution:1. Department of Chemistry, Federal University of São Carlos – UFSCar, Rodovia Washington Luís, km 235, SP-310, São Carlos, 13565-905 São Paulo, Brazil;2. Department of Chemistry, Colorado State University, 1301 Center Ave, Ft. Collins, CO 80523–1872 USA

Dpto. de Química Inorgánica, Instituto de Síntesis Química y Catálisis Homogénea (ISQCH) CSI, Universidad de Zaragoza., C/ Pedro Cerbuna 12, 50009 Zaragoza, Spain;3. Chemistry Institute, University of Campinas – UNICAMP, P.O. Box. 6154, 13083-970 Campinas, SP, Brazil

Nanalysis Corp, Bay 4, 4500 5 Street NE, Calgary, Alberta, Canada;4. Chemistry Institute, University of Campinas – UNICAMP, P.O. Box. 6154, 13083-970 Campinas, SP, Brazil;5. Department of Chemistry, Colorado State University, 1301 Center Ave, Ft. Collins, CO 80523–1872 USA

Abstract:3+2] cycloadditions of nitroolefins have emerged as a selective and catalyst-free alternative for the synthesis of 1,2,3-triazoles from azides. We describe mechanistic studies into the cycloaddition/rearomatization reaction sequence. DFT calculations revealed a rate-limiting cycloaddition step proceeding via an asynchronous TS with high kinetic selectivity for the 1,5-triazole. Kinetic studies reveal a second-order rate law, and 13C kinetic isotopic effects at natural abundance were measured with a significant normal effect at the conjugated olefinic centers of 1.0158 and 1.0216 at the α and β-carbons of β-nitrostyrene. Distortion/interaction-activation strain and energy decomposition analyses revealed that the major regioisomeric pathway benefits from an earlier and less-distorted TS, while intermolecular interaction terms dominate the preference for 1,5- over 1,4-cycloadducts. In addition, the major regioisomer also has more favorable electrostatic and dispersion terms. Additionally, while static DFT calculations suggest a concerted but highly asynchronous Ei-type HNO2 elimination mechanism, quasiclassical direct-dynamics calculations reveal the existence of a dynamic intermediate.
Keywords:distortion/interaction-activation strain analysis  nitroolefins  quasiclassical direct dynamics calculations  [3+2] cycloaddition  13C KIE at natural abundance
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