Balakrishnan, P.; Sanij, F.D.; Chang, Z.; Leung, P.K.; Su, H.; Xing, L.; Xu, Q.
Nano-Graphene Layer from Facile, Scalable and Eco-Friendly Liquid Phase Exfoliation Strategy as Effective Barrier Layer for High-Performance and Durable Direct Liquid Alcohol Fuel Cells. Molecules 2022, 27, 3044.
https://doi.org/10.3390/molecules27093044
AMA Style
Balakrishnan P, Sanij FD, Chang Z, Leung PK, Su H, Xing L, Xu Q.
Nano-Graphene Layer from Facile, Scalable and Eco-Friendly Liquid Phase Exfoliation Strategy as Effective Barrier Layer for High-Performance and Durable Direct Liquid Alcohol Fuel Cells. Molecules. 2022; 27(9):3044.
https://doi.org/10.3390/molecules27093044
Chicago/Turabian Style
Balakrishnan, Prabhuraj, Fereshteh Dehghani Sanij, Zhixin Chang, P. K. Leung, Huaneng Su, Lei Xing, and Qian Xu.
2022. "Nano-Graphene Layer from Facile, Scalable and Eco-Friendly Liquid Phase Exfoliation Strategy as Effective Barrier Layer for High-Performance and Durable Direct Liquid Alcohol Fuel Cells" Molecules 27, no. 9: 3044.
https://doi.org/10.3390/molecules27093044
APA Style
Balakrishnan, P., Sanij, F. D., Chang, Z., Leung, P. K., Su, H., Xing, L., & Xu, Q.
(2022). Nano-Graphene Layer from Facile, Scalable and Eco-Friendly Liquid Phase Exfoliation Strategy as Effective Barrier Layer for High-Performance and Durable Direct Liquid Alcohol Fuel Cells. Molecules, 27(9), 3044.
https://doi.org/10.3390/molecules27093044