Kontaktujte nás | Jazyk: čeština English
Název: | Effect of calcination temperature on electrochemical performance of niobium oxides/carbon composites | ||||||||||
Autor: | Fei, Haojie; Kazantseva, Natalia E.; Pechancová, Viera; Jurča, Marek; Škoda, David; Urbánek, Michal; Urbánek, Pavel; Machovský, Michal; Bugárová, Nikola; Sáha, Petr | ||||||||||
Typ dokumentu: | Recenzovaný odborný článek (English) | ||||||||||
Zdrojový dok.: | Journal of Materials Science. 2022, vol. 57, p. 8504-8515 | ||||||||||
ISSN: | 0022-2461 (Sherpa/RoMEO, JCR) | ||||||||||
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DOI: | https://doi.org/10.1007/s10853-022-06931-4 | ||||||||||
Abstrakt: | Orthorhombic niobium pentoxide (T-Nb2O5) possesses an intercalation pseudocapacitive behavior, which is a promising candidate of high-rate anodes for Li-ion capacitors. However, its low electric conductivity hinders the realization of this property. In our study, niobium oxides/carbon composites were prepared by calcinating a niobium peroxo-PAA complex (NbPAA) precursor to improve the electric conductivity. It has been found that the calcination temperature played an important role on the chemical compositions of obtained composites. A reduction phenomenon of niobium oxides by carbon was observed at high temperatures. At the medium temperature of 900 °C, the sample was composed of T-Nb2O5, monoclinic Nb2O5 (M-Nb2O5), amorphous carbon and niobium dioxide (NbO2). Due to the high conductivity of carbon, semi-conductivity of NbO2, and high specific capacity of M-Nb2O5, this sample exhibits a good specific capacity of 142 mAh g−1 (0.25 C) and a high-rate capability (capacity retention of 33.1%, 0.25 C to 25 C). It could be used as one of high-rate anodes for Li-ion capacitors. © 2022, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature. | ||||||||||
Plný text: | https://link.springer.com/article/10.1007%2Fs10853-022-06931-4 | ||||||||||
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