Wang, S.; Zeng, P.; Li, N.; Yi, Y.; Qin, Y.; Yu, X.; Liu, L.; Guo, Q.; Zhou, Z.
Enabling Coal-Fired Power Flexibility: Wide-Temperature NOx Removal via Strong Electron–Orbital Interaction in Dual-Site Catalysts. Catalysts 2025, 15, 971.
https://doi.org/10.3390/catal15100971
AMA Style
Wang S, Zeng P, Li N, Yi Y, Qin Y, Yu X, Liu L, Guo Q, Zhou Z.
Enabling Coal-Fired Power Flexibility: Wide-Temperature NOx Removal via Strong Electron–Orbital Interaction in Dual-Site Catalysts. Catalysts. 2025; 15(10):971.
https://doi.org/10.3390/catal15100971
Chicago/Turabian Style
Wang, Shaogang, Pengxin Zeng, Ning Li, Yuansheng Yi, Yongsheng Qin, Xin Yu, Lei Liu, Qi Guo, and Zijian Zhou.
2025. "Enabling Coal-Fired Power Flexibility: Wide-Temperature NOx Removal via Strong Electron–Orbital Interaction in Dual-Site Catalysts" Catalysts 15, no. 10: 971.
https://doi.org/10.3390/catal15100971
APA Style
Wang, S., Zeng, P., Li, N., Yi, Y., Qin, Y., Yu, X., Liu, L., Guo, Q., & Zhou, Z.
(2025). Enabling Coal-Fired Power Flexibility: Wide-Temperature NOx Removal via Strong Electron–Orbital Interaction in Dual-Site Catalysts. Catalysts, 15(10), 971.
https://doi.org/10.3390/catal15100971