Atom-pair catalytic sites for high-efficiency emission control of nitrogen oxides at low temperature
Author:
Publisher
Science China Press., Co. Ltd.
Subject
Multidisciplinary
Link
https://engine.scichina.com/doi/pdf/6C3FE278FDFC4020A338482469531ADD
Reference7 articles.
1. Anenberg S C, Miller J, Minjares R. Impacts and mitigation of excess diesel-related NOx emissions in 11 major vehicle markets. Nature, 2017, 545: 467-471.
2. Han L, Cai S, Gao M. Selective catalytic reduction of NOx with NH3 by using novel catalysts: State of the art and future prospects. Chem Rev, 2019, 119: 10916-10976.
3. Qu W, Yuan H, Ren Z. An atom-pair design strategy for optimizing the synergistic electron effects of catalytic sites in NO selective reduction. Angew Chem, 2022, 134:
4. Reiche M, Hug P, Baiker A. Effect of grafting sequence on the behavior of titania-supported V2O5-WO3 catalysts in the selective reduction of NO by NH3. J Catal, 2000, 192: 400-411.
5. Jaegers N R, Lai J, He Y. Mechanism by which tungsten oxide promotes the activity of supported V2O5/TiO2 catalysts for NOX abatement: Structural effects revealed by 51V MAS NMR spectroscopy. Angew Chem Int Edit, 2019, 58: 12609-12616.
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