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https://elar.urfu.ru/handle/10995/138711
Title: | Electrolytes in the [N13pip]ClO4-LiClO4-Al2O3 System for Solid State Lithium Batteries |
Authors: | Kyzlasova, D. Ulihin, A. S. Uvarov, N. F. |
Issue Date: | 2024 |
Publisher: | Уральский федеральный университет Ural Federal University |
Citation: | Kyzlasova D. Electrolytes in the [N13pip]ClO4-LiClO4-Al2O3 System for Solid State Lithium Batteries / D. Kyzlasova, A. Ulihin, N. Uvarov // Chimica Techno Acta. — 2024. — Vol. 11, No. 3. — № 202411304. |
Abstract: | The transport, electrochemical, structural, and thermal properties of electrolytes in the ternary system [N13pip]ClO4-LiClO4-γ-Al2O3 (N13pip is N-methyl-N-ethyl-piperidinium cation) were investigated at the molar ratio [N13pip]ClO4:LiClO4 = 0.82:0.18. The addition of alumina leads to a change in the thermodynamic properties of the [N13pip]ClO4-LiClO4 system that can be explained by a partial transfer of lithium perchlorate from the organic phase to the surface of γ-Al2O3. The highest ionic conductivity of 6.2∙10–4 S/cm at 110 °C was observed for the composition containing the volume fraction (f) of γ-Al2O3 equal to 0.5. The increase in conductivity compared to the binary system 0.82[N13pip]ClO4-0.18LiClO4 is achieved due to the amorphization of the organic salt near the salt/LiClO4/oxide interfaces. Galvanostatic cycling with Li electrodes shows that composites with f = 0.5 are stable at 110 °C for at least 68 charge/discharge cycles, and the electrolyte is shown to be electrochemically stable up to 5 V. This system can be used as a solid-state electrolyte in lithium-ion current sources. |
Keywords: | SOLID STATE IONICS ORGANIC IONIC PLASTIC CRYSTALS LITHIUM-ION CURRENT SOURCES SOLID COMPOSITE ELECTROLYTES IONIC CONDUCTIVITY |
URI: | http://elar.urfu.ru/handle/10995/138711 |
RSCI ID: | https://www.elibrary.ru/item.asp?id=71733571 |
ISSN: | 2411-1414 |
DOI: | 10.15826/chimtech.2024.11.3.04 |
Sponsorship: | This work was report delivered at the X International Russia-Kazakhstan scientific-practical conference “Chemical Technologies of Functional Materials". This work was supported by the Russian Science Foundation (grant no. 20-13-00302), https://www.rscf.ru/en. |
RSCF project card: | 20-13-00302 |
Origin: | Chimica Techno Acta. 2024. Vol. 11. № 3 |
Appears in Collections: | Chimica Techno Acta |
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cta-2024-3-03.pdf | 914,86 kB | Adobe PDF | View/Open |
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