Authors | I.I. Grygorchak1, I.M. Budzulyak2, D.I. Popovych3, L.S. Yablon2, O.V. Morushko2, V.M. Boychuk2 |
Affiliations |
1National University «Lviv Politehnica», 12, S. Bandery Str., 79013 Lviv, Ukraine 2Vasyl Stefanyk Precarpathian National University, 57, Shevchenko Str., 76018 Ivano-Frankivsk, Ukraine 3Pidstryhach Institute for Applied Problems of Mechanics and Mathematics National Academy of Sciences of Ukraine, 3-b, Naukova Str., 79060 Lviv, Ukraine |
Е-mail | yablon_lyubov@ukr.net |
Issue | Volume 10, Year 2018, Number 5 |
Dates | Received 12 July 2018; revised manuscript received 20 October 2018; published online 29 October 2018 |
Citation | I.I. Grygorchak, I.M. Budzulyak, et al., J. Nano- Electron. Phys. 10 No 3, 05003 (2018) |
DOI | https://doi.org/10.21272/jnep.10(5).05003 |
PACS Number(s) | 81.05.Cy, 82.45.Fk, 82.45.Yz |
Keywords | Molybdenum disulphide, Template method, Specific capacity (2) . |
Annotation |
Molybdenum disulfide is obtained by the template method. Its structure and electrochemical properties are investigated. It was found that the working voltage of the LPS for molybdenum disulfide obtained by template method reaches 3 V, the specific capacitance is 180.9 F/g. It was identified that the electric energy storage device the positive electrode of which is molybdenum disulfide obtained by the template method has the discharge specific capacity of 238.9 F/g at a scan rate of 0.001 V/c. |
List of References |