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      • Tungsten disilicide (WSi2) is an inorganic compound, a silicide of tungsten. It is an electrically conductive ceramic material.
      en.wikipedia.org/wiki/Tungsten_disilicide
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  2. Tungsten disilicide (WSi 2) is an inorganic compound, a silicide of tungsten. It is an electrically conductive ceramic material.

  3. Nov 14, 2017 · Tungsten disilicide (WSi 2) was synthesized by simple thermal treatment at 1350 °C for 4 h in an argon atmosphere. These optimal synthesis conditions were obtained by variation of temperatures and times of heating, and the structure of the final synthesized compound was determined by XRPD analysis.

    • Jelena Luković, Dejan Zagorac, J. Christian Schön, Jelena Zagorac, Dragana Jordanov, Tatjana Volkov-...
    • 2017
  4. The experimentally known modification of tungsten di-silicide (WSi 2) crystallizes in the tetragonal space group I4/mmm (no. 139). Furthermore, the equilibrium WSi 2 tetrago-nal modification is characterized as the MoSi 2 structure type (Strukturbericht designation C11 b, and Pearson symbol tI6).[19–21] The MoSi 2 crystal structure is ...

  5. Sep 1, 2019 · Tungsten disilicide (WSi 2) is an attractive advanced functional material, which is regarded as the potential thermoelectric devices, energy storage system and aerospace etc. However, the correlation between structure and the related performances of WSi 2 is not well understood.

    • Y. Pan, C. Jing, Y.P. Wu
    • 2019
  6. Nov 1, 2017 · According to standards defined by Merzhanov, Munir, and Anselmi, the combustion synthesis process for the system of Al-Si-WO3-B2O3 is the type of self-propagating high-temperature synthesis...

  7. Oct 16, 2024 · In this study, we studied the compression behavior of tungsten disilicide (WSi2) to 35.5 GPa using synchrotron radiation X-ray diffraction with silicon oil as the pressure transmission medium in a diamond anvil at room temperature.

  8. Author: Lukovic, J. et al.; Genre: Journal Article; Issued: 2017; Keywords: Tungsten disilicide; Tungsten; XRPD analysis; Title: Tungsten Disilicide (WSi2): Synthesis, Characterization, and Prediction of New Crystal Structures

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