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Nursyafni Nursyafni
Nursyafni Nursyafni
Other namesNursyafni Syamsunar
Verified email at grad.unri.ac.id
Title
Cited by
Cited by
Year
Averrhoa bilimbi leaves-derived oxygen doped 3D-linked hierarchical porous carbon as high-quality electrode material for symmetric supercapacitor
E Taer, A Apriwandi, N Nursyafni, R Taslim
Journal of Energy Storage 52, 104911, 2022
362022
Novel Solanum torvum Fruit Biomass-Derived Hierarchical Porous Carbon Nanosphere as Excellent Electrode Material for Enhanced Symmetric Supercapacitor …
E Taer, N Syamsunar, A Apriwandi, R Taslim
Jom 75 (11), 4494-4506, 2023
162023
Self-single-doped hierarchical porous carbon nanofiber derived Alpinia galanga stem-based for boosted supercapacitor performance
E Taer, N Nursyafni, W Febriani, A Apriwandi, JG Manjunatha, ...
Materials Letters 360, 135954, 2024
102024
High Potential of Averrhoa bilimbi Leaf Waste as Porous Activated Carbon Source for Sustainable Electrode Material Supercapacitor
E Taer, R Taslim
Journal of Physics: Conference Series 2049 (1), 012051, 2021
22021
Novel colored biomass-waste from food industry sector derived hierarchical porous carbon nanofiber for robust symmetric supercapacitor
WM Nursyaputri, ZK Fairuzy, Z Khumairah, N Yanti, N Nursyafni, ...
Communications in Science and Technology 9 (2), 411-420, 2024
2024
Oxygen-functionalization of unique hierarchical carbon nanosheet fishtail-like for synergistically enhanced capacitive performance supercapacitor
E Taer, N Nursyafni, A Apriwandi, A Fudholi, N Chitraningrum, ...
Advances in Natural Sciences: Nanoscience and Nanotechnology 15 (4), 045011, 2024
2024
Areca-nut waste-derived carbon porous for sustainable electrode materials: A brief study for green-supercapacitor
N Nursyafni, J Julnaidi, E Taer
Indonesian Physics Communication 21 (3), 197-204, 0
Harnessing multi-doping porous carbon from Musa paradisiaca L. peel waste for solid-state supercapacitors
CE Purba, N Nursyafni, A Apriwandi, P Kresna, J Julnaidi, M Nasir, ...
Indonesian Physics Communication 21 (3), 187-196, 0
Analysis of the Electrical Properties of Dielectric Thin Films 0.2 batio3–0.8 bazr0. 5ti0. 5o3 on a Fluorine-Doped Tin Oxide Substrate
R Dewi, S Daulay, T Hadilala, SN Sitorus, AS Rini, Y Hamzah, ...
Available at SSRN 4583187, 0
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