Donor−acceptor catalysis with defective MoS2 and Fe0 breaks barriers to perchlorate reduction under mild conditions

H Hejie Qin H Han Yang Z Zhenmin Zhang Y Yiran Feng Y Yuankui Sun P Peng Fan Z Zhimin Ao T T. David Waite X Xiaohong Guan (Department of Environmental Science, Institute of Eco-Chongming, School of Ecological and Environmental Sciences)

Abstract

Abstract Perchlorate (ClO 4 − ) contamination in water poses global health risks, yet its efficient reduction to harmless Cl − under mild conditions remains challenging. Here, we report a donor−acceptor catalytic system comprising defective MoS 2 on N-doped carbon (MoS 2 −NC) coupled with zerovalent iron (Fe 0 ), which enables rapid ClO 4 − reduction at near-neutral pH (rate constant, 2.36 h −1 ), yielding Cl − as the sole product. In the MoS 2 −NC/Fe 0 system, Fe 0 acts as the electron donor, while undercoordinated Mo atoms in defective MoS 2 serve as the active sites, and N-doped carbon mediates electron transfer and optimizes the electronic environment for ClO 4 − reduction. The reduction proceeds via oxygen atom transfer, involving Cl−O bond cleavage, O binding to Mo sites, and hydrodeoxygenation of the Mo-bound O atoms. Our observations offer a practical strategy for ClO 4 − reduction without harsh conditions or noble metals and underscore the promise of donor−acceptor-based, defect-engineered catalysts for reductive transformation of challenging oxyanions.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 20, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

H

Hejie Qin

H

Han Yang

Z

Zhenmin Zhang

Y

Yiran Feng

Y

Yuankui Sun

P

Peng Fan

Z

Zhimin Ao

T

T. David Waite

X

Xiaohong Guan

Department of Environmental Science, Institute of Eco-Chongming, School of Ecological and Environmental Sciences