Chinese Journal of Catalysis ›› 2026, Vol. 89: 177-183.DOI: 10.1016/S1872-2067(26)65178-9

• Communication • Previous Articles     Next Articles

Electrosynthesis of tetrahydrofurans from styrenes with water as oxygen source

Shuyan Hana,*,1(), Yajuan Zhanga,1, Yixuan Gaob, Hongfang Lia, Yanyan Hea, Zhenhua Jiaa,*(), Teck-Peng Loha,c,*()   

  1. aHenan Linker Technology Key Laboratory, College of Advanced Interdisciplinary Science and Technology, Henan University of Technology, Zhengzhou 450001, Henan, China
    bAgricultural Clean Watershed Research Group, Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Key Laboratory of Agricultural and Rural Eco-Environment, Ministry of Agriculture and Rural Affairs, Beijing 100081, China
    cDivision of Chemistry and Biological Chemistry, School of Chemistry, Chemical Engineering, and Biotechnology, Nanyang Technological University, 21 Nanyang Link,Singapore 637371, Singapore
  • Received:2026-03-03 Accepted:2026-05-18 Online:2026-10-18 Published:2026-09-01
  • Contact: *E-mail:caist_hsy@haut.edu.cn(S. Han),caist_zhjia@haut.edu.cn(Z. Jia),teckpeng@ntu.edu.sg(T.-P. Loh).
  • About author:

    1 Contributed equally to this work.

  • Supported by:
    Provincial Natural Science Foundation of Henan(252300423688);Postdoctoral Fellowship Program of CPSF(GZB20240202);Start-up Grant of Henan University of Technology(2023BS070);MTC Individual Research Grant(M21K2c0114);RIE2025 MTC Programmatic Fund(M22K9b0049)

Abstract:

Electrochemical synthesis offers a sustainable platform for redox transformations. However, many existing methods suffer from low Faradaic efficiency and high energy input. Herein, we report an efficient electrosynthetic strategy for the direct conversion of styrenes into tetrahydrofurans (THFs) using water as the sole oxygen source. By integrating experimental studies and theoretical calculations, we revealed that inexpensive carbon-based electrodes effectively promoted styrene activation and facilitated a radical-radical coupling of styrene-derived radical cations and hydroxyl radicals(•OH) generated in-situ from water oxidation. Moreover, key reactive intermediates were identified to support the proposed mechanism. This work established an efficient route to THFs and underscored the potential of electrochemical approaches for harnessing water as oxygen source in selective organic transformations.

Key words: Electrochemical oxidation, Non-metallic catalyst, Water as oxygen source, Oxygen transfer, Oxidation of functional groups in olefins