PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 9, 20263 citations

Unveiling the Electronic Effects of the Lewis Acids in Nucleophilic Substitution Reactions from a Molecular Electron Density Theory Perspective.

View Full Paper
LDLuís R. DomingoMAMaria José AurellPPPatricia Pérez

Key Points

  • The research aims to explore how Lewis acids influence nucleophilic substitution reactions from a molecular electron density theory perspective.
  • Utilized molecular electron density theory at the ωB97X-D/6-311G(d,p) level.
  • Analyzed the LA-catalyzed reactions of sulfonyl aziridines and nucleophiles in dichloromethane.
  • Conducted topological analyses of electron density at transition-state structures.
  • Lewis acids significantly enhance the nucleofugality of sulfonamide-leaving groups.
  • Activation enthalpies are reduced by over 17 kcal·mol^-1, increasing the feasibility of reactions.
  • Transition-state structures indicate a carbocation-like nature at the central carbon during reactions.

Abstract

The electronic effects of Lewis acids (LAs) in nucleophilic substitution (SN) reactions are investigated from a molecular electron density theory (MEDT) perspective at the ωB97X-D/6-311G(d,p) level in dichloromethane. The LA-catalyzed ring-opening of two sulfonyl aziridines, typically classified as SN2-type processes, is analyzed, and the LA-assisted SN reactions of three N-alkylmethanesulfonamides toward the chloride anion. LAs do not significantly increase the electrophilicity ω of the substrate but markedly enhance the nucleofugality Λ of the sulfonamide-leaving group (LG), which governs SN feasibility. LAs lower activation enthalpies by over 17 kcal·mol-1, rendering the ring-opening of 2-phenylaziridines fully regioselective. Electron-density topological analyses show that at the transition-state structures (TSs), the C-N bond associated with the LG is already broken, whereas C-Cl bond formation has not begun, indicating a carbocation-like structure at the central carbon. A relative interacting atomic energy analysis of the LA-catalyzed ring-opening of 1-methanesulfonylaziridine by the chloride anion in the presence of Me4N+ reveals that stabilization of both the sulfonamide:LA LG and chloride accounts for the reduced activation barriers. LAs such as BF3 and AlCl3 enhance the LG ability (nucleofugality Λ) of sulfonamides, shifting the TS toward a more carbocation-like (SN1-like) structure and lowering the nucleophile participation.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Domingo et al. (2026) studied this question.

synapsesocial.com/papers/698979e9f0ec2af6756e803fhttps://doi.org/10.1021/acs.joc.5c02214
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Molecular Interactions in Solution: An Overview of Methods Based on Continuous Distributions of the Solvent1994 · 5,519 citations
  2. 2Understanding the Electronic Effects of Lewis Acid Catalysts in Accelerating Polar Diels–Alder Reactions2024 · 19 citations
  3. 3A Short Enantioselective Pathway for the Synthesis of the Anti-Influenza Neuramidase Inhibitor Oseltamivir from 1,3-Butadiene and Acrylic Acid2006 · 267 citations
  4. 4BF3·OEt2-Mediated Highly Regioselective SN2-Type Ring-Opening of N-Activated Aziridines and N-Activated Azetidines by Tetraalkylammonium Halides2009 · 131 citations
  5. 5Formulation of the reaction coordinate1970 · 3,548 citations