1. M.A.A.M. Abdah, N.H.N. Azman, S. Kulandaivalu, Y. Sulaiman, Review of the use of transition-metal-oxide and conducting polymer-based fibres for high-performance supercapacitors. Mater. Des. 186, 0264–1275 (2020)
2. O.S. Kwon, T. Kim, J.S. Lee, S.J. Park, H.W. Park, M. Kang, J.E. Lee, J. Jang, H. Yoon, Fabrication of graphene sheets intercalated with manganese oxide/carbon nanofibers: toward high-capacity energy storage. J. Energy Storage 2, 248–254 (2013)
3. B.S. Singu, K.R. Yoon, Exfoliated graphene-manganese oxide nanocomposite electrode materials for supercapacitor. J. Alloys Compd. 770, 1189–1199 (2019)
4. I.W. Siriwardane, N.P.W. Rathuwadu, D. Dahanayake, C. Sandaruwan, R.M. de Silva, Nalin De Silva, Nano-manganese oxide and reduced graphene oxide-incorporated polyacrylonitrile fiber mats as an electrode material for capacitive deionization (CDI) technology. Nanoscale Adv. 3, 2585–2597 (2021)
5. S.K. Nataraj, Q. Song, S.A. Al-Muhtaseb, S.E. Dutton, Q. Zhang, E. Sivaniah, Thin, flexible supercapacitors made from carbon nanofiber electrodes decorated at room temperature with manganese oxide nanosheets. J. Nanomater. (2013). https://doi.org/10.1155/2013/272093