In Situ Sulfur Modification Enables Electrochemical Selective Deuterated Thiol–Yne Reactions

L Liyuan Lan (College of Chemistry and Life Science Beijing University of Technology Beijing 100124 China) Y Ying Gao C Cuibo Liu (Institute of Molecular Plus) B Bin Zhang K Kun Xu (College of Chemistry and Life Science) C Chengchu Zeng (College of Chemistry and Life Science)

Abstract

Abstract The deuterated thiol–yne reaction using D 2 O represents an attractive strategy for simultaneously introducing pharmaceutically relevant C(sp 2 )─D bonds and vinyl sulfide motifs. However, achieving high deuterium (D) incorporation remains a significant challenge. Herein, we report an electrochemical deuterated thiol–yne reaction that delivers D‐containing vinyl sulfides with up to 98% alkene selectivity and 99% D incorporation, employing disulfides (RSSR) and D₂O over an in situ sulfur‐modified nickel foam (NF) electrode. Mechanistic studies reveal a reductive cleavage of RSSR to RS⁻ intermediates, which subsequently form surface nickel sulfide (NiS x ) species through R─S bond cleavage. In situ and ex situ characterizations confirm the NiS x formation and its role in reducing alkene adsorption, thereby suppressing its overreduction. This strategy demonstrates broad applicability across terminal and internal alkynes, as well as aromatic and aliphatic disulfides, furnishing 30 diverse examples of D‐labeled vinyl sulfides.

Article Details

Volume / Issue Vol. 64, Issue 37
Published September 08, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

L

Liyuan Lan

College of Chemistry and Life Science Beijing University of Technology Beijing 100124 China

Y

Ying Gao

C

Cuibo Liu

Institute of Molecular Plus

B

Bin Zhang

K

Kun Xu

College of Chemistry and Life Science

C

Chengchu Zeng

College of Chemistry and Life Science