Ma, S.; Li, H.; Huang, Y.; Sun, K.; Huang, Y.; Fang, Y.; Du, Y.
Phosphate Modification Promotes Low-Temperature NH3-SCO over Cu/CeO2 Through Coupled Regulation of Surface Acidity and Oxygen Species. Catalysts 2026, 16, 628.
https://doi.org/10.3390/catal16070628
AMA Style
Ma S, Li H, Huang Y, Sun K, Huang Y, Fang Y, Du Y.
Phosphate Modification Promotes Low-Temperature NH3-SCO over Cu/CeO2 Through Coupled Regulation of Surface Acidity and Oxygen Species. Catalysts. 2026; 16(7):628.
https://doi.org/10.3390/catal16070628
Chicago/Turabian Style
Ma, Shiqi, Haoyang Li, Yuchen Huang, Kai Sun, Yuejia Huang, Yarong Fang, and Yan Du.
2026. "Phosphate Modification Promotes Low-Temperature NH3-SCO over Cu/CeO2 Through Coupled Regulation of Surface Acidity and Oxygen Species" Catalysts 16, no. 7: 628.
https://doi.org/10.3390/catal16070628
APA Style
Ma, S., Li, H., Huang, Y., Sun, K., Huang, Y., Fang, Y., & Du, Y.
(2026). Phosphate Modification Promotes Low-Temperature NH3-SCO over Cu/CeO2 Through Coupled Regulation of Surface Acidity and Oxygen Species. Catalysts, 16(7), 628.
https://doi.org/10.3390/catal16070628