Polyacrylonitrile Nanofiber Optimization as Precursor of Carbon Nanofibers for Supercapacitors
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Journal of Innovative Science and Engineering, Bursa Technical University
Reference48 articles.
1. [1] Jadhav, S.A., S.B. Dhavale, A.H. Patil and P.S. Patil, (2019). Brief overview of electrospun polyacrylonitrile carbon nanofibers: Preparation process with applications and recent trends. Material Design & Processing Communications, 1(5): https://doi.org/10.1002/mdp2.83
2. [2] Gu, S.Y., J. Ren and Q.L. Wu, (2005). Preparation and structures of electrospun PAN nanofibers as a precursor of carbon nanofibers. Synthetic Metals, 155(1): 157–161
3. [3] Inagaki, M., Y. Yang and F. Kang, (2012). Carbon nanofibers prepared via electrospinning. Advanced Materials, 24(19): 2547–2566
4. [4] Kim, C. and K.S. Yang, (2003). Electrochemical properties of carbon nanofiber web as an electrode for supercapacitor prepared by electrospinning. Applied Physics Letters, 83(6): 1216–1218
5. [5] Kim, C., K.S. Yang, M. Kojima, K. Yoshida, Y.J. Kim, Y.A. Kim and M. Endo, (2006). Fabrication of electrospinning-derived carbon nanofiber webs for the anode material of lithium-ion secondary batteries. Advanced Functional Materials, 16(18): 2393–2397
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