Controlling basal plane sulfur vacancy in water splitting MoSx/NiF electrocatalysts through electric-field-assisted pulsed laser ablation
| 期刊 | iScience |
| 发表日期 | 2023-Jun-16 |
| 作者 | Saraj Chaudry Sajed; Singh Subhash C; Ali Roshan; Shukla Abhishek; Verma Gopal; Zou Ting Ting; Yu Weili; Li Wei; Guo Chunlei |
| DOI | 10.1016/j.isci.2023.106797 |
| PMID | 37250778 |
原始摘要
Eco-friendly, efficient, and durable electrocatalysts from earth-abundant materials are crucial for water splitting through hydrogen and oxygen generation. However, available methods to fabricate electrocatalysts are either hazardous and time-consuming or require expensive equipment, hindering the large-scale, eco-friendly production of artificial fuels. Here, we present a rapid, single-step method for producing MoS/NiF electrocatalysts with controlled sulfur-vacancies via electric-field-assisted pulsed laser ablation (EF-PLA) in liquid and deposition on nickel foam, enabling efficient water splitting. Electric-field parameters efficiently control S-vacancy active sites in electrocatalysts. Higher electric fields yield a MoS/NiF electrocatalyst with a larger density of S-vacancy sites, suited for HER due to lower Gibbs free energy for H∗ adsorption, while lower electric fields produce an electrocatalyst with lower S-vacancy sites, better suited for OER, as shown by both experimental and theoretical results. The present work opens a horizon in designing high-efficiency catalysts, for a wide range of chemical reactions.
| 撤稿日期 | 2026-Aug-21 |
| 撤稿期刊 | iScience |
| 发布机构 | United States |
| 通知PMID | 42472116 |
Retraction notice to "Controlling basal plane sulfur vacancy in water splitting MoSx/NiF electrocatalysts through electric-field-assisted pulsed laser ablation" [iScience 26 (2023) 106797]