ZCO/CNT Composites Coated on Silver Substrates as Symmetric Supercapacitor and their Dielectrics Characterization at Various Frequencies
Autor: | Markus Diantoro, Ahmad Taufiq, Abdulloh Fuad, Subakti S, Lisa Ainun Najihah, Arif Hidayat |
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Rok vydání: | 2016 |
Předmět: |
Supercapacitor
Materials science Spinel Composite number 02 engineering and technology Dielectric engineering.material 010402 general chemistry 021001 nanoscience & nanotechnology 01 natural sciences Capacitance 0104 chemical sciences Screen printing engineering Composite material 0210 nano-technology Mass fraction Separator (electricity) |
Zdroj: | INDONESIAN JOURNAL OF APPLIED PHYSICS. 4:95 |
ISSN: | 2477-6416 2089-0133 |
DOI: | 10.13057/ijap.v4i01.1176 |
Popis: | Supercapacitor is a high power density energy storage device which complements the lack of batteries and conventional capacitors. One material which has a great potential in the manufacture of composite supercapacitor is spinel ZnCo2O4/carbon nano tube and abreviated in the later case as ZCO/CNT. Composition variations in ZCO/CNT composites is expected to the performance of supercapacitor especially the dielectric properties and specific capacitance. Inthis study the composite ZCO/CNT was made from raw materials of ZCO nano crystal which was prepared from previous research on which employing sonochemistry technic, carbon nano tube, and 1-methil 2 pyrolidine. A screen printing method was used in this experiment to deposite the composite on silver substrates. The separator in between of two identical composite structures was prepared from isotactic polypropylene. We used KOH 6 M which was implemented as electrolyte of the composites. Characterization of composite structures has been performed using X-RD, while the morphology characterization using SEM. It was found that the dielectric supercapacitor increase by increasing of mass fraction of ZCO in the composite. Thehighest dielectric constant is reached at 1.89 x 106 and the specific capacitance of 81 F/g for 3:1mass ratio of ZCO : CNT at 100 Hz. |
Databáze: | OpenAIRE |
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