Nickel-Catalyzed C(sp3)–H Arylation for the trans -Selective Synthesis of Sterically Congested Cyclopropanes and Other Cycloalkanes

Abstract Cyclopropanes with a gem-substitution pattern are of significant structural importance, with key applications in the fields of drug design and agrochemistry. However, despite substantial progress in 4d- and 5d-metal-catalyzed C–H activation of cyclic alkanes, direct functionalization of gem-dimethyl substituted cyclopropanes remained an unmet challenge. In this paper, we set out a preliminary general strategy to address this challenge. Not only abundant and inexpensive Ni-catalyst can be used, but also the uncommon trans-selectivity can be attained under the optimized reaction conditions. This direct arylation reaction demonstrates a broad substrate scope in terms of aryl-iodide coupling partner. In addition to this, it can be directly applied to the functionalization of other cyclic alkanes, including adamantyl cores, which are notoriously challenging to process. The experimental mechanistic studies, in combination with DFT calculations, provide a rational explanation for the mechanism of this transformation and the uncommon trans-selectivity.

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Publication Details

Journal
ACS Catalysis
Published
2026-09-30
DOI
https://doi.org/10.1021/acscatal.6c06078
Primary Topic
Catalytic C–H Functionalization Methods
Type
article
Field-Weighted Citation Impact
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article

Nickel-Catalyzed C(sp3)–H Arylation for the trans -Selective Synthesis of Sterically Congested Cyclopropanes and Other Cycloalkanes

Àlex Díaz‐Jiménez, Erwan Brunard, Joanna Wencel‐Delord, Fengjie Huang
ACS Catalysis
Catalytic C–H Functionalization Methods
article

Nickel-Catalyzed C(sp3)–H Arylation for the trans -Selective Synthesis of Sterically Congested Cyclopropanes and Other Cycloalkanes

Àlex Díaz‐Jiménez, Erwan Brunard, Joanna Wencel‐Delord, Fengjie Huang
article en

Abstract

Abstract Cyclopropanes with a gem-substitution pattern are of significant structural importance, with key applications in the fields of drug design and agrochemistry. However, despite substantial progress in 4d- and 5d-metal-catalyzed C–H activation of cyclic alkanes, direct functionalization of gem-dimethyl substituted cyclopropanes remained an unmet challenge. In this paper, we set out a preliminary general strategy to address this challenge. Not only abundant and inexpensive Ni-catalyst can be used, but also the uncommon trans-selectivity can be attained under the optimized reaction conditions. This direct arylation reaction demonstrates a broad substrate scope in terms of aryl-iodide coupling partner. In addition to this, it can be directly applied to the functionalization of other cyclic alkanes, including adamantyl cores, which are notoriously challenging to process. The experimental mechanistic studies, in combination with DFT calculations, provide a rational explanation for the mechanism of this transformation and the uncommon trans-selectivity.

ACS Catalysis
University of Würzburg (DE)
Openalex Percentile: Top 23%
Catalytic C–H Functionalization Methods
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