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Updated: Sep 10, 2025

Efficient Synthesis of Polyfunctionalized Benzenes in Water via Persulfate-promoted Benzannulation of α,β-Unsaturated Compounds and Alkynes
Published on: December 16, 2019
Thiophenol-Catalyzed Radical Hydroformylation of Unactivated Sterically Hindered Alkenes
Yisicheng Wang1,2, Panpan Bao3, Xiaojuan Dong1,4
1State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, 345 Lingling Road, Shanghai 200032, China.
Abstract:
Sterically congested alkenes─ubiquitous in pharmaceuticals and industrial intermediates─remain inaccessible to classical hydroformylation due to prohibitive steric strain in transition-metal catalysis. Here, we report a thiophenol-catalyzed radical hydroformylation that overcomes dual steric and electronic constraints through a synergistic system: bench-stable α-chloro N-methoxyphthalimides (formyl precursors) and a tailored thiophenol HAT catalyst. This metal-free strategy achieves unprecedented hydroformylation of unactivated, tri-, and tetrasubstituted alkenes─including electron-rich styrenes and aliphatic alkene systems─with high chemo- and regioselectivity. Key advances include: 1) the first hydroformylation of tetrasubstituted styrenes, delivering β-aryl aldehydes with quaternary centers (up to 74% yield); 2) thiophenol lowers the HAT barrier by 8.3 kcal/mol to enable catalytic turnover under steric congestion. Mechanistic studies confirm a formyl radical pathway, while syngas (CO/H2) elimination establishes a safe, sustainable platform for synthesizing medicinally relevant motifs (e.g., oxime ethers) and industrial targets like Lilial derivatives.
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