材料科学
氨
铜
相间
还原(数学)
硝酸盐
氧化物
无机化学
氧化铜
氨生产
冶金
有机化学
化学
几何学
数学
生物
遗传学
作者
Yunxiang Lin,Ying Wang,Ying Xu,Hengjie Liu,Xue Liu,Lei Shan,Chuanqiang Wu,Li Yang,Li Song
标识
DOI:10.1002/adfm.202417486
摘要
Abstract The electrochemical reduction of nitrate offers an environmentally friendly and sustainable development strategy to mitigate nitrate pollution and further facilitate value‐added ammonia synthesis. Here, interphase Cu 2+1 O (regarded as Cu 2 O with metal excess defects) featured by abundant Cu 0 and Cu δ+ sites with Ru single atoms incorporation (marked as Ru SA @Cu 2+1 O) are synthesized by fast Joule heating method for efficient nitrate reduction to ammonia. The X‐ray absorption spectroscopy found that the incorporation of Ru atoms can effectively tune the local electronic structure of Cu 2+1 O substrate with charge polarization. The as‐prepared Ru SA @Cu 2+1 O exhibits a remarkable Faradaic efficiency (FE) of 98.02% and an ammonia yield of 0.81 mmol h −1 cm −2 at the potential of ‐0.4 V (vs RHE). In situ, attenuated total reflection surface‐enhanced infrared absorption spectroscopy and theoretical investigations further confirm that Ru incorporation promotes the rapid transfer of the hydrogenation process. This study not only presents a feasible approach for fabricating interphase catalysts through fast Joule heating synthesis, but also offers insights into effectively regulating the local electronic structure of electrocatalysts for boosted reaction process.
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