法拉第效率
空位缺陷
质子化
兴奋剂
还原(数学)
产量(工程)
选择性
催化作用
材料科学
电化学
纳米技术
化学
光电子学
结晶学
离子
物理化学
冶金
有机化学
数学
电极
几何学
作者
Kai Chen,Jiaxin Wang,Jilong Kang,Xubin Lu,Xiaolin Zhao,Ke Chu
标识
DOI:10.1016/j.apcatb.2022.122241
摘要
Electrocatalytic NO-to-NH3 conversion (NORR) provides an appealing route for both sustainable NH3 production and harmful NO abatement. Herein, we combine the strategies of atomic doping and vacancy engineering to design atomically Fe-doped and S-vacancy-rich MoS2 (Fe1/MoS2−x) as a highly efficient NORR catalyst, showing the maximum NH3-Faradaic efficiency of 82.5% and NH3 yield of 288.2 μmol h−1 cm−2 at − 0.6 V vs. RHE. Theoretical calculations unveil that Fe-Mo dual sites created on Fe1/MoS2−x can cooperatively activate NO and dissociate the NO bond, boost the protonation energetics and simultaneously suppress the competing hydrogen evolution, resulting in the significantly expedited NORR activity and selectivity.
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