Asnawi, A.S.F.M.; B. Aziz, S.; M. Nofal, M.; Hamsan, M.H.; Brza, M.A.; Yusof, Y.M.; Abdilwahid, R.T.; Muzakir, S.K.; Kadir, M.F.Z.
Glycerolized Li+ Ion Conducting Chitosan-Based Polymer Electrolyte for Energy Storage EDLC Device Applications with Relatively High Energy Density. Polymers 2020, 12, 1433.
https://doi.org/10.3390/polym12061433
AMA Style
Asnawi ASFM, B. Aziz S, M. Nofal M, Hamsan MH, Brza MA, Yusof YM, Abdilwahid RT, Muzakir SK, Kadir MFZ.
Glycerolized Li+ Ion Conducting Chitosan-Based Polymer Electrolyte for Energy Storage EDLC Device Applications with Relatively High Energy Density. Polymers. 2020; 12(6):1433.
https://doi.org/10.3390/polym12061433
Chicago/Turabian Style
Asnawi, Ahmed S. F. M., Shujahadeen B. Aziz, Muaffaq M. Nofal, Muhamad H. Hamsan, Mohamad A. Brza, Yuhanees M. Yusof, Rebar T. Abdilwahid, Saifful K. Muzakir, and Mohd F. Z. Kadir.
2020. "Glycerolized Li+ Ion Conducting Chitosan-Based Polymer Electrolyte for Energy Storage EDLC Device Applications with Relatively High Energy Density" Polymers 12, no. 6: 1433.
https://doi.org/10.3390/polym12061433
APA Style
Asnawi, A. S. F. M., B. Aziz, S., M. Nofal, M., Hamsan, M. H., Brza, M. A., Yusof, Y. M., Abdilwahid, R. T., Muzakir, S. K., & Kadir, M. F. Z.
(2020). Glycerolized Li+ Ion Conducting Chitosan-Based Polymer Electrolyte for Energy Storage EDLC Device Applications with Relatively High Energy Density. Polymers, 12(6), 1433.
https://doi.org/10.3390/polym12061433