Donor−acceptor catalysis with defective MoS2 and Fe0 breaks barriers to perchlorate reduction under mild conditions
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
Authors (9)
Hejie Qin
Han Yang
Zhenmin Zhang
Yiran Feng
Yuankui Sun
Peng Fan
Zhimin Ao
T. David Waite
Xiaohong Guan
Department of Environmental Science, Institute of Eco-Chongming, School of Ecological and Environmental Sciences