z-logo
open-access-imgOpen Access
Porous Activated Carbon Binder-free Scleria sumatrensis Stem-Based for Supercapacitor Application
Author(s) -
Erman Taer,
Muhammad Ali Akbar Tsalis,
Apriwandi Apriwandi,
Novі Yantі,
Awitdrus,
Lazuardi,
Rika Taslim
Publication year - 2021
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/2049/1/012008
Subject(s) - supercapacitor , materials science , activated carbon , electrolyte , porosity , energy storage , chemical engineering , electrode , electrochemistry , composite material , chemistry , organic chemistry , engineering , power (physics) , physics , adsorption , quantum mechanics
Green, sustainable and effective development technique to obtain high porous activated carbon biomass based is important to boosting supercapacitor performance with environmentally friendly effect as conversion system and energy storage devices. We reported porous activated carbon binder-free Scleria sumatrensis stem-based as electrode material high performance of symmetric supercapacitor. Precursor biomass of Scleria sumatrensis stem was converted into porous carbon through simple ZnCl 2 impregnated with different concentration of 0.4M, 0.5M, 0.6M, and 0.7M at high-temperature phyrolysis. All samples confirmed good amorphous carbon with small amounts of oxidative compounds. In two-electrode system, the optimum sample of ACSS0.6 significantly boosting the specific capacitance as high as 142.62 F g −1 at scan rate of 1 mV s −1 . Furthermore, the optimum energy density was found to be 19.80 Wh kg −1 at a maximum power density of 71.35 W kg −1 in 1 M H 2 SO 4 aqueous electrolyte. These results confirm that the porous activated carbon binder-free Scleria sumatrensis stem-based through simple ZnCl 2 impregnated as an electrode material to boosting the electrochemical behavior of supercapacitors.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here