多硫化物
催化作用
硫化氢
硫代硫酸盐
电化学
硫化物
制氢
无机化学
电解
化学工程
解吸
氢
吸附
化学
材料科学
硫黄
电解质
电极
物理化学
有机化学
工程类
作者
Yuhou Pei,Di Li,Chuntian Qiu,Liang Yan,Zongmiao Li,Zexin Yu,Wenzhang Fang,Yingying Lü,Bing Zhang
标识
DOI:10.1002/anie.202411977
摘要
Electrochemical sulfion oxidation reaction (SOR) offers a sustainable strategy for sulfion‐rich wastewater treatment, which can couple with cathodic hydrogen evolution reaction (HER) for energy‐saving hydrogen production. However, the corrosion and passivation of sulfur species render the inferior catalytic SOR performance, and the oxidation product, polysulfide, requires further acidification to recover cheap elementary sulfur. Here, we reported an amorphous high‐entropy sulfide catalyst of CuCoNiMnCrSx nanosheets in‐situ growth on the nickel foam (CuCoNiMnCrSx/NF) for SOR, which achieved an ultra‐low potential of 0.25 V to afford 100 mA cm‐2, and stable electrolysis at as high as 1 A cm‐2 for 100 h. These were endowed by the manipulated chemical environments surrounding Cu+ sites and the constructed “soft‐acid” to “hard‐acid” adsorption/desorption sites, enabling synergistically boosted adsorption/desorption process of sulfur species during SOR. Moreover, we developed an electrochemical‐chemical tandem process to convert sulfions to value‐added thiosulfate, providing a good choice for simultaneous wastewater utilization and hydrogen production.
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