JOURNAL ARTICLE

LatticeHydrogen Involved Electrocatalytic NitrateReduction to Hydroxylamine

Abstract

Electrocatalytic nitrate reduction to hydroxylamine (ENRH) provides a sustainable strategy for NH2OH synthesis under ambient conditions. At present, active hydrogen (*H) derived from water dissociation has been widely used as a H-source for nitrate hydrogenation, bringing a big challenge for ENRH. On the one hand, insufficient *H would lead to the accumulation of nitrite. On the other hand, sufficient *H with high reduction ability would induce over-hydrogenation of hydroxylamine to ammonia. To overcome this challenge, herein, we propose to utilize lattice hydrogen (Hlat) with an appropriate reduction ability as the H-source for ENRH. We design and construct a Cu-MnO2Hx electrocatalyst, in which the Cu-triggered Jahn–Teller distortion of [MnO6] octahedron significantly increases the number of Hlat. The Faradaic efficiency and yield of NH2OH are as high as 91.1% and 396.6 mmol gcat.–1 h–1 over Cu-MnO2Hx, outperforming most of the reported catalysts. The combined results of isotopic tracking experiments and theoretical calculations prove the enrichment and buffer functions of Hlat, which can provide an abundant H-source for nitrate’s selective reduction to hydroxylamine.

Keywords:
Hydroxylamine Nitrate Dissociation (chemistry) Hydrogen Reduction (mathematics) Octahedron

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Topics

Ammonia Synthesis and Nitrogen Reduction
Physical Sciences →  Chemical Engineering →  Catalysis
CO2 Reduction Techniques and Catalysts
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Electrocatalysts for Energy Conversion
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment

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