Nanoscale Structure of Positive Electrodes for Lithium-Ion Batteries with Graphene-Based Additives according to Small-Angle Neutron Scattering

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The adaptation of neutron scattering methods for studying the microstructure of electrode materials of lithium-ion batteries was continued in order to improve their characteristics with respect to specific energy. Using small-angle scattering of thermal neutrons, the effect of conductive carbon additives (graphene and graphene oxide) on the porous structure of electrodes made from LiFePO4, Li4Ti5O12 and LiNiMnCoO2 was studied. To separate the scattering by closed and open pores, the electrodes were wetted with a typical liquid electrolyte with a deuterated liquid carrier (dimethyl carbonate), which led to the matching of scattering by open pores. It was established that the electrically conductive carbon additives changed the electrode porosity to varying degrees and affected the wettability of materials both due to different degrees of penetration into the pores of the source material and due to the effect on the initial matrix. A universal effect on the scattering of polymer binder (polyvinylidene fluoride) was also found.

作者简介

M. Yerdauletov

Frank Laboratory of Neutron Physics, Joint Institute for Nuclear Research; Institute of Nuclear Physics, Ministry of Energy of the Republic of Kazakhstan; L.N. Gumilyov Eurasian National University

Email: avd@nf.jinr.ru
Russia, 141980, Moscow Region, Dubna; Kazakhstan, 050032, Almaty; Kazakhstan, 010000, Astana

M. Avdeev

Frank Laboratory of Neutron Physics, Joint Institute for Nuclear Research; Dubna State University

编辑信件的主要联系方式.
Email: avd@nf.jinr.ru
Russia, 141980, Moscow Region, Dubna; Russia, 141980, Moscow region, Dubna

A. Tomchuk

Frank Laboratory of Neutron Physics, Joint Institute for Nuclear Research

Email: avd@nf.jinr.ru
Russia, 141980, Moscow Region, Dubna

F. Napolskiy

Dubna State University

Email: avd@nf.jinr.ru
Russia, 141980, Moscow region, Dubna

D. Djanseitov

Institute of Nuclear Physics, Ministry of Energy of the Republic of Kazakhstan; L.N. Gumilyov Eurasian National University

Email: avd@nf.jinr.ru
Kazakhstan, 050032, Almaty; Kazakhstan, 010000, Astana

V. Krivchenko

Dubna State University

Email: avd@nf.jinr.ru
Russia, 141980, Moscow region, Dubna

参考

  1. Napolskiy F., Avdeev M., Yerdauletov M. et al. // Energy Technol. 2020. V. 8. P. 2000146.
  2. Mei W., Chen H., Suna J., Wang Q. // Sustain. Energy Fuels. 2019. V. 3. P. 148.
  3. Nitta N., Wu F., Lee J.T., Yushin G. // Mater. Today. 2015. V. 18. P. 252.
  4. Liu X.-M., Huang Z.D., Oh S. et al. // Composites Sci. Tech. 2012. V. 72. P. 121.
  5. Claye A., Fischer J., Huffman C. et al. // J. Electrochem. Soc. 2000. V. 147. P. 2845.
  6. Авдеев M.В., Ердаулетов М.С., Иваньков О.И. и др. // Поверхность. Рентген., синхротр, и нейтрон. исслед. 2019. № 7. С. 57.
  7. Jiao X., Kirianova A.V., Xu X., et.al. // ACS Appl. Energy Mater. 2023., in press.
  8. Kuklin A.I., Ivankov A.I., Soloviov D.V. et al. // J. Phys. Conf. Ser. 2018. V. 994. P. 1.
  9. Soloviev A.G., Solovjeva T.M., Ivankov O.I. et al. // J. Phys. Conf. Ser. 2017. V. 848. P. 012020.
  10. Tomchuk O.V., Volkov D.S., Bulavin L.A. et al. // J. Phys. Chem. C. 2015. V. 119. P. 794.
  11. Tomchuk O.V., Avdeev M.V., Aksenov V.L. et al. // Fuller. Nanotubes Carbon Nanostr. 2022. V. 30. № 1. P. 171.
  12. Vizgalov V.A., Nestler T., Trusov L.A. et al. // CrystEngComm. 2018. V. 20. P. 1375.
  13. Vizgalov V.A., Nestler T., Vyalikh A. et al. // CrystEngComm. 2019. V. 21. P. 3106.

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版权所有 © М. Ердаулетов, М.В. Авдеев, А.А. Томчук, Ф.С. Напольский, Д.М. Джансейтов, В.А. Кривченко, 2023