Wang, F.; Li, J.; Zheng, Y.; Dong, X.; Zhao, Y.; He, Z.; Li, M.; Lin, L.; He, D.; Miao, Z.;
et al. Improved Electrochemical Performance Using Transition Metal Doped ZnNi/Carbon Nanotubes as Conductive Additive in Li/CFx Battery. Catalysts 2025, 15, 758.
https://doi.org/10.3390/catal15080758
AMA Style
Wang F, Li J, Zheng Y, Dong X, Zhao Y, He Z, Li M, Lin L, He D, Miao Z,
et al. Improved Electrochemical Performance Using Transition Metal Doped ZnNi/Carbon Nanotubes as Conductive Additive in Li/CFx Battery. Catalysts. 2025; 15(8):758.
https://doi.org/10.3390/catal15080758
Chicago/Turabian Style
Wang, Fangmin, Jiayin Li, Yuxin Zheng, Xue Dong, Yuzhen Zhao, Zemin He, Manni Li, Lei Lin, Danyang He, Zongcheng Miao,
and et al. 2025. "Improved Electrochemical Performance Using Transition Metal Doped ZnNi/Carbon Nanotubes as Conductive Additive in Li/CFx Battery" Catalysts 15, no. 8: 758.
https://doi.org/10.3390/catal15080758
APA Style
Wang, F., Li, J., Zheng, Y., Dong, X., Zhao, Y., He, Z., Li, M., Lin, L., He, D., Miao, Z., Zhang, H., Tan, H., & Huang, J.
(2025). Improved Electrochemical Performance Using Transition Metal Doped ZnNi/Carbon Nanotubes as Conductive Additive in Li/CFx Battery. Catalysts, 15(8), 758.
https://doi.org/10.3390/catal15080758