Gao, X.; Liu, R.; Wu, L.; Lai, C.; Liang, Y.; Cao, M.; Wang, J.; Yin, W.; Lu, X.; Kawi, S.
Mn-N-C Nanostructure Derived from MnO2-x/PANI as Highly Performing Cathode Additive in Li-S Battery. Reactions 2021, 2, 275-286.
https://doi.org/10.3390/reactions2030017
AMA Style
Gao X, Liu R, Wu L, Lai C, Liang Y, Cao M, Wang J, Yin W, Lu X, Kawi S.
Mn-N-C Nanostructure Derived from MnO2-x/PANI as Highly Performing Cathode Additive in Li-S Battery. Reactions. 2021; 2(3):275-286.
https://doi.org/10.3390/reactions2030017
Chicago/Turabian Style
Gao, Xingyuan, Ruliang Liu, Lixia Wu, Changdi Lai, Yubin Liang, Manli Cao, Jingyu Wang, Wei Yin, Xihong Lu, and Sibudjing Kawi.
2021. "Mn-N-C Nanostructure Derived from MnO2-x/PANI as Highly Performing Cathode Additive in Li-S Battery" Reactions 2, no. 3: 275-286.
https://doi.org/10.3390/reactions2030017
APA Style
Gao, X., Liu, R., Wu, L., Lai, C., Liang, Y., Cao, M., Wang, J., Yin, W., Lu, X., & Kawi, S.
(2021). Mn-N-C Nanostructure Derived from MnO2-x/PANI as Highly Performing Cathode Additive in Li-S Battery. Reactions, 2(3), 275-286.
https://doi.org/10.3390/reactions2030017