Effect of the Carbon Source on the Electrochemical Properties of Li4Ti5O12/C Composites Prepared by Solid-State Synthesis
- Авторы: Stenina I.A.1, Sobolev A.N.1,2, Kuz’mina A.A.3, Kulova T.L.3, Yaroslavtsev A.B.1
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Учреждения:
- Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences
- Mendeleev University of Chemical Technology
- Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences
- Выпуск: Том 55, № 8 (2019)
- Страницы: 803-809
- Раздел: Article
- URL: https://journals.rcsi.science/0020-1685/article/view/158743
- DOI: https://doi.org/10.1134/S0020168519080156
- ID: 158743
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Аннотация
Li4Ti5O12/C composite anode materials have been prepared by solid-state reactions using lithium- or titanium-containing reagents (lithium lactate, acetate, and acetylacetonate or titanium oxyacetylacetonate) not only as precursors for the synthesis of lithium titanate but also as carbon sources. In addition, two surfactants, Pluronic 123 (P123) and cetyltrimethylammonium bromide, have been used as carbon sources. The composites have been characterized by X-ray diffraction, scanning electron microscopy, and Raman spectroscopy, and their electrochemical properties have been studied. The results demonstrate that the best electrochemical performance is offered by the materials prepared using P123. In particular, the discharge capacity of the Li4Ti5O12/C material prepared using TiO2/P123 and lithium lactate is 119 and 44 mAh/g at current densities of 200 and 3200 mA/g, respectively. The materials prepared using lithium and titanium acetylacetonates have high carbon content and undergo more severe degradation during cycling at high current densities.
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Об авторах
I. Stenina
Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences
Автор, ответственный за переписку.
Email: stenina@igic.ras.ru
Россия, Leninskii pr. 31, Moscow, 119991
A. Sobolev
Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences; Mendeleev University of Chemical Technology
Email: stenina@igic.ras.ru
Россия, Leninskii pr. 31, Moscow, 119991; Miusskaya pl. 9, Moscow, 125047
A. Kuz’mina
Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences
Email: stenina@igic.ras.ru
Россия, Leninskii pr. 31/4, Moscow, 119071
T. Kulova
Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences
Email: stenina@igic.ras.ru
Россия, Leninskii pr. 31/4, Moscow, 119071
A. Yaroslavtsev
Kurnakov Institute of General and Inorganic Chemistry, Russian Academy of Sciences
Email: stenina@igic.ras.ru
Россия, Leninskii pr. 31, Moscow, 119991
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