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Flexible Free-Standing MoO3/Ti3C2T z MXene Composite Films with High Gravimetric and Volumetric Capacities.
Zheng, Wei; Halim, Joseph; El Ghazaly, Ahmed; Etman, Ahmed S; Tseng, Eric Nestor; Persson, Per O Å; Rosen, Johanna; Barsoum, Michel W.
Afiliação
  • Zheng W; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
  • Halim J; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
  • El Ghazaly A; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
  • Etman AS; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
  • Tseng EN; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
  • Persson POÅ; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
  • Rosen J; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
  • Barsoum MW; Department of Physics, Chemistry and Biology (IFM) Linköping University Linköping 581 83 Sweden.
Adv Sci (Weinh) ; 8(3): 2003656, 2021 Feb.
Article em En | MEDLINE | ID: mdl-33552874
Enhancing both the energy storage and power capabilities of electrochemical capacitors remains a challenge. Herein, Ti3C2T z MXene is mixed with MoO3 nanobelts in various mass ratios and the mixture is used to vacuum filter binder free, open, flexible, and free-standing films. The conductive Ti3C2T z flakes bridge the nanobelts, facilitating electron transfer; the randomly oriented, and interconnected, MoO3 nanobelts, in turn, prevent the restacking of the Ti3C2T z nanosheets. Benefitting from these advantages, a MoO3/Ti3C2T z film with a 8:2 mass ratio exhibits high gravimetric/volumetric capacities with good cyclability, namely, 837 C g-1 and 1836 C cm-3 at 1 A g-1 for an ≈ 10 µm thick film; and 767 C g-1 and 1664 C cm-3 at 1 A g-1 for ≈ 50 µm thick film. To further increase the energy density, hybrid capacitors are fabricated with MoO3/Ti3C2T z films as the negative electrodes and nitrogen-doped activated carbon as the positive electrodes. This device delivers maximum gravimetric/volumetric energy densities of 31.2 Wh kg-1 and 39.2 Wh L-1, respectively. The cycling stability of 94.2% retention ratio after 10 000 continuous charge/discharge cycles is also noteworthy. The high energy density achieved in this work can pave the way for practical applications of MXene-containing materials in energy storage devices.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article