Alkyne‐Assisted Stereospecific Skeletal Rearrangement via Nonclassical Carbocations

ABSTRACT We report stereospecific nucleophilic substitutions of homopropargylic alcohols enabled by anchimeric assistance from an alkyne. Upon activation, neighboring‐group participation of the alkyne generates a nonclassical cyclopropylidenemethyl cation. The transformation provides access to densely‐substituted tertiary homopropargyl fluorides with broad functional‐group tolerance and efficient chirality transfer from enantioenriched alcohols. Computational studies support the involvement of the nonclassical cationic intermediate. The calculations further indicate that alkyne‐derived nonclassical cations are less stabilized than their alkene analogues.

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Publication Details

Journal
Chemistry - A European Journal
Published
2026-09-30
DOI
https://doi.org/10.1002/chem.71742
Primary Topic
Catalytic Alkyne Reactions
Type
article
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article

Alkyne‐Assisted Stereospecific Skeletal Rearrangement via Nonclassical Carbocations

Kaushalendra Patel, Noam Orbach, Ilan Marek, Rajan Kumar Kharwar
Chemistry - A European Journal
Catalytic Alkyne Reactions
article

Alkyne‐Assisted Stereospecific Skeletal Rearrangement via Nonclassical Carbocations

Kaushalendra Patel, Noam Orbach, Ilan Marek, Rajan Kumar Kharwar
article en

Abstract

ABSTRACT We report stereospecific nucleophilic substitutions of homopropargylic alcohols enabled by anchimeric assistance from an alkyne. Upon activation, neighboring‐group participation of the alkyne generates a nonclassical cyclopropylidenemethyl cation. The transformation provides access to densely‐substituted tertiary homopropargyl fluorides with broad functional‐group tolerance and efficient chirality transfer from enantioenriched alcohols. Computational studies support the involvement of the nonclassical cationic intermediate. The calculations further indicate that alkyne‐derived nonclassical cations are less stabilized than their alkene analogues.

Chemistry - A European Journal
Technion – Israel Institute of Technology (IL)
Openalex Percentile: Top 22%
Catalytic Alkyne Reactions
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