Yi, G.; Li, G.; Jiang, S.; Zhang, G.; Guo, L.; Zhang, X.; Zhao, Z.; Zou, Z.; Ma, H.; Fu, X.;
et al. Efficient Fe3C-CF Cathode Catalyst Based on the Formation/Decomposition of Li2−xO2 for Li-O2 Batteries. Molecules 2023, 28, 5597.
https://doi.org/10.3390/molecules28145597
AMA Style
Yi G, Li G, Jiang S, Zhang G, Guo L, Zhang X, Zhao Z, Zou Z, Ma H, Fu X,
et al. Efficient Fe3C-CF Cathode Catalyst Based on the Formation/Decomposition of Li2−xO2 for Li-O2 Batteries. Molecules. 2023; 28(14):5597.
https://doi.org/10.3390/molecules28145597
Chicago/Turabian Style
Yi, Guanyu, Gaoyang Li, Shuhuai Jiang, Guoliang Zhang, Liang Guo, Xiuqi Zhang, Zhongkui Zhao, Zhongping Zou, Hailong Ma, Xiaojiao Fu,
and et al. 2023. "Efficient Fe3C-CF Cathode Catalyst Based on the Formation/Decomposition of Li2−xO2 for Li-O2 Batteries" Molecules 28, no. 14: 5597.
https://doi.org/10.3390/molecules28145597
APA Style
Yi, G., Li, G., Jiang, S., Zhang, G., Guo, L., Zhang, X., Zhao, Z., Zou, Z., Ma, H., Fu, X., Liu, Y., & Dang, F.
(2023). Efficient Fe3C-CF Cathode Catalyst Based on the Formation/Decomposition of Li2−xO2 for Li-O2 Batteries. Molecules, 28(14), 5597.
https://doi.org/10.3390/molecules28145597