New Solid Electrolyte Li8– xZr1 –xTaxO6 (x = 0–0.5) for Lithium Power Sources
- Авторы: Pantyukhina M.1, Plaksin S.1, Saetova N.1, Raskovalov A.1
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Учреждения:
- Institute of High-Temperature Electrochemistry, Ural Branch, Russian Academy of Sciences
- Выпуск: Том 55, № 12 (2019)
- Страницы: 1269-1276
- Раздел: Article
- URL: https://journals.rcsi.science/1023-1935/article/view/191458
- DOI: https://doi.org/10.1134/S1023193519090118
- ID: 191458
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Аннотация
In the work, new lithium-conducting solid electrolytes based on lithium zirconate are synthesized. They are obtained by doping Li8ZrO6 phase with isostructural Li7TaO6. It is shown that in the Li8– xZr1– xTaxO6 system, a series of solid solutions х = 0−0.5 based on Li8ZrO6 form. The conductivity of synthesized Li8 ‒ xZr1 – xTaxO6 solid solutions increases by 1–2 orders of magnitude as compared with undoped zirconate Li8ZrO6 due to the formation of lithium vacancies in the tetra- and octahedral layers of the structure. All-solid-phase electrochemical cells with Li7.85Zr0.85Ta0.15O6 electrolyte, 0.75Li2SnMo3O12 ∙ 0.25B2O3 glass-ceramic anode, and 0.2Li2O · 0.2LiF · 0.45V2O5 · 0.25B2O3 cathode are electrochemically tested. It is shown that the resistance of 0.75Li2SnMo3O12 · 0.25B2O3|Li7.85Zr0.85Ta0.15O6|0.2Li2O · 0.2LiF · 0.45V2O5 · 0.25B2O3 cell decreases after the charge—discharge cycling.
Об авторах
M. Pantyukhina
Institute of High-Temperature Electrochemistry, Ural Branch, Russian Academy of Sciences
Автор, ответственный за переписку.
Email: marpantyuhina@yandex.ru
Россия, Yekaterinburg, 620137
S. Plaksin
Institute of High-Temperature Electrochemistry, Ural Branch, Russian Academy of Sciences
Email: marpantyuhina@yandex.ru
Россия, Yekaterinburg, 620137
N. Saetova
Institute of High-Temperature Electrochemistry, Ural Branch, Russian Academy of Sciences
Email: marpantyuhina@yandex.ru
Россия, Yekaterinburg, 620137
A. Raskovalov
Institute of High-Temperature Electrochemistry, Ural Branch, Russian Academy of Sciences
Email: marpantyuhina@yandex.ru
Россия, Yekaterinburg, 620137