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◆ Green Synthesis and Catalysis2026-03-01· Chemistry

Photocatalytic radical amination/cyclization of N-allyl and N-homoallyl aldehyde hydrazones: Access to sulfonaminated pyrazoles and tetrahydropyridazines

Qiyang Liu, Ziheng Yu, Lili Wang, Jinwei Yuan, Yuntao Xia, Liangru Yang, Yongmei Xiao, Lingbo Qu

原始摘要(英文原文)· Original abstract
A photocatalytic strategy for the sulfonamidation/cyclization of N -allyl and N -homoallyl aldehyde hydrazones has been developed with N -aminopyridinium salts as sulfonylamino radical precursors. This transformation enables efficient access to sulfonylamino-substituted pyrazoles and tetrahydropyridazines under mild conditions. This protocol features broad substrate compatibility, consistently affording good to excellent yields and exhibiting excellent scalability. Preliminary mechanistic studies support a sulfonamino radical-mediated cascade cyclization pathway for this transformation. Notably, the N -aminopyridinium salts serve a dual role as both sulfonamination reagents and hydrogen-atom transfer mediators, enabling the one-step synthesis of sulfonylamidated pyrazoles. A visible-light-driven photocatalytic radical cascade enables the efficient sulfonamination/cyclization of N -allyl and N -homoallyl aldehyde hydrazones. Bench-stable N -aminopyridinium salts serve dual roles as sulfonamino radical precursors and hydrogen-atom transfer mediators, affording sulfonaminated pyrazoles and tetrahydropyridazines under mild and green conditions.
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Photocatalytic radical amination/cyclization of N-allyl and N-homoallyl aldehyde hydrazones: Access to sulfonaminated pyrazoles and tetrahydropyridazines — 科研速览 Science Skim