Composite solid electrolytes based on lithium doped N-methyl-N-propylpiperidinium salt

Cover Page

Cite item

Full Text

Abstract

The effect of lithium perchlorate (LiClO4) on the transport and thermal properties of the ternary system consisting of N-methyl-N-propylpiperidinium perchlorate, highly dispersed γ-aluminum oxide (having the specific surface area of 200 m2 /g), and lithium perchlorate was investigated. It was shown that the obtained composites exhibited thermal stability up to at least 190°C. Using the impedance spectroscopy method, it was shown that the highest conductivity of solid electrolytes was ~10–5 S/cm at 40°C, x = 0.5, and 3·10–4 S/cm at x = 0.55 (T = 110°С).

About the authors

Daria A. Kyzlasova

Institute of Chemistry of a Solid body and Mechanochemistry of the Siberian Branch of RAS; Novosibirsk State University

ORCID iD: 0009-0000-7136-5339
18, Kutateladze St., Novosibirsk, 630128

Artem S. Ulihin

Institute of Chemistry of a Solid body and Mechanochemistry of the Siberian Branch of RAS

ORCID iD: 0000-0002-6795-0006
SPIN-code: 2810-7309
Scopus Author ID: 15046088200
ResearcherId: P-1187-2017
18, Kutateladze St., Novosibirsk, 630128

Nikolai F. Uvarov

Institute of Chemistry of a Solid body and Mechanochemistry of the Siberian Branch of RAS

ORCID iD: 0000-0002-8209-7533
SPIN-code: 8137-4513
18, Kutateladze St., Novosibirsk, 630128

References

  1. Kamaya N., Homma K., Yamakawa Y., Hirayama M., Kanno R., Yonemura M., Kamiyama T., Kato Y., Hama S., Kawamoto K., Mitsui A. A lithium superionic conductor. Nature Materials, 2011, vol. 10, no. 9, pp. 682–686. https://doi.org/10.1038/nmat3066
  2. Qiu J., Liu X., Chen R., Li Q., Wang Y., Chen P., Gan L., Lee S., Nordlund D., Liu Y., Yu X., Bai X., Li H., Chen L. Enabling Stable Cycling of 4.2 V High-Voltage All-Solid-State Batteries with PEOBased Solid Electrolyte. Advanced Functional Materials, 2020, vol. 30, no. 22, article no. 1909392. https://doi.org/10.1002/adfm.201909392
  3. Howlett P. C., Sunarso J., Shekibi Y., Wasser E., Jin L., MacFarlane D. R., Forsyth M. On the use of organic ionic plastic crystals in all solidstate lithium metal batteries. Solid State Ionics, 2011, vol. 204–205, pp. 73–79. https://doi.org/10.1016/j.ssi.2011.09.012
  4. Basile A., Hilder M., Makhlooghiazad F., Pozo-Gonzalo C., MacFarlane D. R., Howlett P. C., Forsyth M. Ionic Liquids and Organic Ionic Plastic Crystals: Advanced Electrolytes for Safer High Performance Sodium Energy Storage Technologies. Advanced Energy Materials, 2018, vol. 8, no. 17, article no. 1703491. https://doi.org/10.1002/aenm.201703491
  5. Mateyshina Y., Stebnitskii I., Shivtsov D., Ilyina E., Ulihin A., Bukhtiyarov A., Uvarov N. Hybrid Nanocomposite Solid Electrolytes (n-C4H9)4NBF4– MgO. International Journal of Molecular Sciences, 2023, vol. 24, no. 13, article no. 10949. https://doi.org/10.3390/ijms241310949
  6. Ulihin A. S., Uvarov N. F., Rabadanov K. Sh., Gafurov M. M., Gerasimov K. B. Thermal, structural and transport properties of composite solid electrolytes (1− x)(C4H9)4NBF4–xAl2O3. Solid State Ionics, 2022, vol. 378, article no. 115889. https://doi.org/10.1016/j.ssi.2022.115889
  7. Ulihin A. S., Izmodenova A. V., Uvarov N. F. Effect of the Nature of a Heterogeneous Dopant on the Transport and Thermodynamic Properties of Composites Based on n-Methyl-n-Butylpiperidinium Tetrafluoroborate. Russian Journal of Electrochemistry, 2024, vol. 60, no. 1, pp. 67–72. https://doi.org/10.1134/S1023193524010130
  8. Kyzlasova D., Ulihin A., Uvarov N. Electrolytes for solid state lithium batteries in the [N13pip]ClO4-LiClO4-Al2O3 system for solid state lithium batteries. Chimica Techno Acta, 2024, vol. 11, no. 3, article no. 202411304. https://doi.org/10.15826/chimtech.2024.11.3.04
  9. Kyzlasova D., Ulihin A., Uvarov N. Phase behavior and electrochemical properties of lithium-doped N-methyl-N-propyl-piperidinium perchlorate. Ionics, 2024, 18 October. https://doi.org/10.1007/s11581-024-05889-4

Supplementary files

Supplementary Files
Action
1. JATS XML

Согласие на обработку персональных данных

 

Используя сайт https://journals.rcsi.science, я (далее – «Пользователь» или «Субъект персональных данных») даю согласие на обработку персональных данных на этом сайте (текст Согласия) и на обработку персональных данных с помощью сервиса «Яндекс.Метрика» (текст Согласия).