Guo, Y.; Feng, A.; Peng, Y.; Liu, X.; Lin, S.; Liu, P.; Zu, Y.; Li, X.
MOF Derivatives Confined Within Self-Supporting Bamboo Substrates with Hierarchical Porous Architectures for Long-Term Cycling Stability in Zinc–Air Batteries. Materials 2026, 19, 598.
https://doi.org/10.3390/ma19030598
AMA Style
Guo Y, Feng A, Peng Y, Liu X, Lin S, Liu P, Zu Y, Li X.
MOF Derivatives Confined Within Self-Supporting Bamboo Substrates with Hierarchical Porous Architectures for Long-Term Cycling Stability in Zinc–Air Batteries. Materials. 2026; 19(3):598.
https://doi.org/10.3390/ma19030598
Chicago/Turabian Style
Guo, Yating, Ailing Feng, Yue Peng, Xing Liu, Shebao Lin, Peitao Liu, Yanqing Zu, and Xiaodong Li.
2026. "MOF Derivatives Confined Within Self-Supporting Bamboo Substrates with Hierarchical Porous Architectures for Long-Term Cycling Stability in Zinc–Air Batteries" Materials 19, no. 3: 598.
https://doi.org/10.3390/ma19030598
APA Style
Guo, Y., Feng, A., Peng, Y., Liu, X., Lin, S., Liu, P., Zu, Y., & Li, X.
(2026). MOF Derivatives Confined Within Self-Supporting Bamboo Substrates with Hierarchical Porous Architectures for Long-Term Cycling Stability in Zinc–Air Batteries. Materials, 19(3), 598.
https://doi.org/10.3390/ma19030598