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Ni/NHC-catalyzed C5-H alkylation and alkenylation of challenging furan(thiophene)-2-carboxaldehydes enabled by recyclable imine protecting group
Тип публикации: Journal Article
Дата публикации: 2025-08-22
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SJR: 1.485
CiteScore: 7.5
Impact factor: 6.2
ISSN: 23993669
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Transition-metal-catalyzed C-H alkylation of heteroaromatics with alkenes represents an atom-economical and cost-effective strategy for accessing industrially and pharmaceutically relevant compounds. However, the selective C5-H alkylation of biomass-derived furfural and its isosteric analog, thiophene-2-carboxaldehyde, highly challenging yet industrially vital substrates, has remained elusive. Herein, we disclose a Ni/NHC-catalyzed strategy for the C5-H alkylation of furan- and thiophene-2-carboxaldehydes with styrenes and norbornene, enabled by a readily installable and recyclable N-PMP (p-methoxyphenyl) imine protecting group. This method also achieves selective C5-H alkenylation with internal alkynes. Mechanistic studies suggest that C-H alkylation proceeds via a ligand-to-ligand hydrogen transfer (LLHT) pathway. The N-PMP imine group effectively suppresses undesirable benzoin condensation of these reactive aldehydes and prevents NHC trapping in Breslow intermediates, a major catalyst deactivation pathway. The protecting group is efficiently cleaved under acid hydrolysis, yielding C5-functionalized aldehydes, while the liberated anisidine can be recycled for imine substrate preparation. This work also highlights the largely unexplored potential of the N-aryl imine group as the protecting group for distal C(sp²)-H functionalization of heteroaromatic aldehydes under Ni catalysis. A Ni/NHC-catalyzed strategy for C5-H alkylation and alkenylation of furan- and thiophene-2-carboxaldehydes with alkenes and alkynes has been developed, leveraging an easily installable and recyclable N-PMP imine protecting group. This group suppresses unwanted benzoin condensation of the reactive aldehydes and avoids NHC trapping in Breslow intermediates—a key catalyst deactivation pathway.
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Khazipova O. V. et al. Ni/NHC-catalyzed C5-H alkylation and alkenylation of challenging furan(thiophene)-2-carboxaldehydes enabled by recyclable imine protecting group // Communications Chemistry. 2025. Vol. 8. No. 1. 253
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Khazipova O. V., Khazipov O. V., Shepelenko K. E., Kashin A. S., Zhang Yu., Chernyshev V. M. Ni/NHC-catalyzed C5-H alkylation and alkenylation of challenging furan(thiophene)-2-carboxaldehydes enabled by recyclable imine protecting group // Communications Chemistry. 2025. Vol. 8. No. 1. 253
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TY - JOUR
DO - 10.1038/s42004-025-01653-5
UR - https://www.nature.com/articles/s42004-025-01653-5
TI - Ni/NHC-catalyzed C5-H alkylation and alkenylation of challenging furan(thiophene)-2-carboxaldehydes enabled by recyclable imine protecting group
T2 - Communications Chemistry
AU - Khazipova, Olga V.
AU - Khazipov, Oleg V
AU - Shepelenko, Konstantin E
AU - Kashin, Alexey S
AU - Zhang, Yu
AU - Chernyshev, Victor M.
PY - 2025
DA - 2025/08/22
PB - Springer Nature
IS - 1
VL - 8
SN - 2399-3669
ER -
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@article{2025_Khazipova,
author = {Olga V. Khazipova and Oleg V Khazipov and Konstantin E Shepelenko and Alexey S Kashin and Yu Zhang and Victor M. Chernyshev},
title = {Ni/NHC-catalyzed C5-H alkylation and alkenylation of challenging furan(thiophene)-2-carboxaldehydes enabled by recyclable imine protecting group},
journal = {Communications Chemistry},
year = {2025},
volume = {8},
publisher = {Springer Nature},
month = {aug},
url = {https://www.nature.com/articles/s42004-025-01653-5},
number = {1},
pages = {253},
doi = {10.1038/s42004-025-01653-5}
}