Biomass-derived activated carbon from acacia pods as a green electrode material for supercapacitors
Abstract
Keywords
Full Text:
PDFReferences
1. Jin, X., Jiang, Z., Feng, Y., & Fang, X. (2024). Optimization of cobalt-based MOFs for super-capacitor electrode materials of new energy vehicle. Heliyon, 10(10).
2. Abro, K. A., Khan, I., Nisar, K. S., & Atangana, A. (2021). Super-criticism of electrochemical double layer capacitor for diffusion phenomenon: A fractional application of ultracapacitor. Alexandria Engineering Journal, 60(3), 3361–3368.
3. Gautam, M., Patodia, T., Kushwaha, P., Agrawal, M., & Kushwaha, H. S. (2024). Evaluation of zinc-ion hybrid super-capacitor based on chemically activated (KOH/H3PO4) ground nutshell biochar. Carbon Trends, 15, 100341.
4. Nursyaputri, W. M., Fairuzy, Z. K., Khumairah, Z., Yanti, N., Nursyafni, N., Apriwandi, A., Taslim, R., & Taer, E. (2024). Novel colored biomass-waste from food industry sector derived hierarchical porous carbon nanofiber for robust symmetric supercapacitor. Communications in Science and Technology, 9(2), 411–420.
5. Awad, M. A., Hendi, A. A., Natarajan, S., Ortashi, K. M., Alsaif, S. S., Alnamlah, R. A., Rasheed, A., & Althobaiti, H. (2023). Wet chemical synthesis and characterization of FeVO4 nanoparticles for super capacitor as energy storage device. Journal of King Saud University-Science, 35(8), 102857.
6. Gong, Z., Guo, Y., Chen, X., Xiao, J., Wang, T., & Chai, B. (2025). Tangerine peel-derived nitrogen doped porous carbon as electrode material for high-performance supercapacitors. International Journal of Electrochemical Science, 101081.
7. Yang, L., Zheng, H., Liu, L., Wu, W., & Wang, S. (2021). N, O self-doped hierarchical porous carbon materials for high-performance super-capacitors. Results in Chemistry, 3, 100109.
8. Rustamaji, H., Prakoso, T., Devianto, H., Widiatmoko, P., Febriyanto, P., br Ginting, S., & Darmansyah, D. (2025). Synthesis of rubber seed shell-derived porous activated carbons for promising supercapacitor application. International Journal of Renewable Energy Development, 14(2), 265–275.
9. Yan, B., Zheng, J., Feng, L., Zhang, Q., Zhang, C., Ding, Y., ... & He, S. (2023). Pore engineering: Structure-capacitance correlations for biomass-derived porous carbon materials. Materials & Design, 229, 111904.
10. El Jannah, S. M., Latifah, I., & Zuraida, Z. (2020). Uji Daya Bunuh Ekstrak Daun Acacia nilotica L. Terhadap Bakteri Bacillus subtilis dan Staphylococcus epidermidis. Anakes: Jurnal Ilmiah Analis Kesehatan, 6(1), 91–102.
11. Hazra, F., Istiqomah, F. N., & Firdaus, I. D. (2024). Potensi pupuk hayati mikoriza fumyco dalam meningkatkan pertumbuhan tanaman akasia (Acacia mangium Willd.) di nursery. Jurnal Tanah dan Sumberdaya Lahan, 11(1), 143–149.
12. Palimbong, E., Ibrahim, I., Suba, R. B., Ruslim, Y., Kiswanto, K., & Herlambang, H. (2023). Respon pertumbuhan Acacia crassicarpa A. Cunn. Ex Benth. terhadap pemberian pupuk cair yang berbeda di persemaian PT Mayawana Persada, Pontianak, Kalimantan Barat. ULIN: Jurnal Hutan Tropis, 7(1), 56–63.
13. Taer, E., Deraman, M., Othman, M. A. R., Shamsudin, S. A., Omar, F. S., Awitdrus, A., Farma, R., Apriwandi, A., Deniza, R. N., & Taslim, R. (2025). Heteroatom-enriched carbon from acacia pods for high-performance symmetric supercapacitors: Balancing gravimetric and volumetric capacities. Diamond and Related Materials, 152, 111919.
14. Yetri, Y., Dunnas, I., & Tashima, D. (2025). Thickness analysis of activated carbon electrode of cocoa shell on electrochemical performance of supercapacitors. Results in Engineering, 106992.
15. Marina, D., & Kurniawan, W. B. (2021). Karakteristik karbon aktif limbah kulit lada (Piper nigrum L) sebagai elektroda superkapasitor. Jurnal Riset Fisika Indonesia, 2(1), 7-14.
16. Rajagukguk, E. P., Nasution, W. M., Muldarisnur, M., & Yetri, Y. (2024). Analisis Pengaruh Variasi Elektrolit H2SO4, KOH, dan Na2SO4 Terhadap Kinerja Elektrokimia Superkapasitor berbasis Biomassa Kulit Kakao. Jurnal Fisika Unand, 13(5), 610-616.
DOI: http://dx.doi.org/10.31258/jkfi.22.3.221-226
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Indexing by:







