Zhao, C.; Wang, R.; Fang, B.; Liang, H.; Nie, B.; Wang, R.; Xu, B.; Feng, S.; Li, R.; Li, S.;
et al. Boosting the Lithium Storage Properties of a Flexible Li4Ti5O12/Graphene Fiber Anode via a 3D Printing Assembly Strategy. Batteries 2023, 9, 493.
https://doi.org/10.3390/batteries9100493
AMA Style
Zhao C, Wang R, Fang B, Liang H, Nie B, Wang R, Xu B, Feng S, Li R, Li S,
et al. Boosting the Lithium Storage Properties of a Flexible Li4Ti5O12/Graphene Fiber Anode via a 3D Printing Assembly Strategy. Batteries. 2023; 9(10):493.
https://doi.org/10.3390/batteries9100493
Chicago/Turabian Style
Zhao, Chenpeng, Rui Wang, Biao Fang, Han Liang, Biyuan Nie, Ruyi Wang, Biao Xu, Songyang Feng, Ruqing Li, Shuaifei Li,
and et al. 2023. "Boosting the Lithium Storage Properties of a Flexible Li4Ti5O12/Graphene Fiber Anode via a 3D Printing Assembly Strategy" Batteries 9, no. 10: 493.
https://doi.org/10.3390/batteries9100493
APA Style
Zhao, C., Wang, R., Fang, B., Liang, H., Nie, B., Wang, R., Xu, B., Feng, S., Li, R., Li, S., Xiong, Y., Shao, Y., & Mo, R.
(2023). Boosting the Lithium Storage Properties of a Flexible Li4Ti5O12/Graphene Fiber Anode via a 3D Printing Assembly Strategy. Batteries, 9(10), 493.
https://doi.org/10.3390/batteries9100493