<p>In the current investigation, fluorine tin co-doped indium oxide (F, Sn: In<sub>2</sub>O<sub>3</sub>) cubic-shaped nanocrystals were put through dynamic shock wave recovery studies in order to evaluate the structural performance of these nanocrystals under harsh conditions. Despite being exposed to a shock wave with a Mach number of up to 6.2 at a variety of shock speeds, the F, Sn: In<sub>2</sub>O<sub>3</sub> nanocrystals were able to maintain their original crystal structure, as demonstrated by the findings.</p>

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Sustainability of Fluorine-Tin Co-Doped Indium Oxide (F,Sn:In2O3) Nanocrystals at Various Shock Speeds Under Dynamic Shocked Conditions

  • S. Surendhar,
  • Ikhyun Kim,
  • P. Sivaprakash,
  • Shin Hum Cho

摘要

In the current investigation, fluorine tin co-doped indium oxide (F, Sn: In2O3) cubic-shaped nanocrystals were put through dynamic shock wave recovery studies in order to evaluate the structural performance of these nanocrystals under harsh conditions. Despite being exposed to a shock wave with a Mach number of up to 6.2 at a variety of shock speeds, the F, Sn: In2O3 nanocrystals were able to maintain their original crystal structure, as demonstrated by the findings.