Carbon Microrod Material Derived From Human Hair and Its Electrochemical Supercapacitor Application
Abstract
Keywords
References
- [1] Liu, C., Li, F., Ma, L. P., Cheng, H. M., "Advanced Materials for Energy Storage", Adv. Mater., 22: 28-62, (2010).
- [2] Frackowiak, E., "Carbon materials for supercapacitor application", Phys. Chem. Chem. Phys., 9: 1774-1785, (2007).
- [3] Rani, J.R., Thangavel, R., Oh, S-I., Lee, Y.S., Jang, J-H., "An Ultra-High-Energy Density Supercapacitor; Fabrication Based on Thiol-functionalized Graphene Oxide Scrolls,Nanomaterials", Nanomaterials, 9: 148-160, (2019).
- [4] Wang, Q., Yan, J., Wang, Y., Wei, T., Zhang, M., Jing, X., Fan, Z., "Three-dimensional flower-like and hierarchical porous carbon materials as high-rate performance electrodes for supercapacitors", Carbon, 67: 119-127, (2014).
- [5] Obreja, V. V. N., "On the performance of supercapacitors with electrodes based on carbon nanotubes and carbon activated material", Physica E., 40: 2596-2605, (2008).
- [6] Huggins, R. A., "Supercapacitors and electrochemical pulse sources", Solid State Ionics, 134: 179-195, (2000).
- [7] Jayalakshmi, M., Balasubramanian, K., "Simple Capacitors to Supercapacitors", Int. J. Electrochem. Sci. 3: 1196-1217, (2008).
- [8] Pech, D., Brunet, M., Durou, H., Huang, P., Mochalin, V., Gogotsi, Y., Taberna, P. L., Simon, P., "Ultrahigh-power micrometre-sized supercapacitors based on onion-like carbon", Nat. Nanotechnol., 5: 651–654, (2010).
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Publication Date
September 1, 2021
Submission Date
April 1, 2020
Acceptance Date
December 24, 2020
Published in Issue
Year 2021 Volume: 34 Number: 3
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