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- W2917339287 abstract "In this work, the iron nanoparticles were formed after the pulse UV laser photolysis of Fe(CO)5 vapor in argon atmosphere. The second laser pulse was implemented for heating of formed iron nanoparticles at different times from the moment of its formation. The registration of incandescence signals from laser-heated nanoparticles allowed measuring the particle evaporation temperature and their size using laser-induced incandescence technique. Simultaneous application of the laser-induced incandescence and the laser light extinction techniques provided an observation of the particle evaporation process caused by laser heating. The particle evaporation temperature was found to be in the range of 2100–2600 K in dependence on particle size and pressure of bath gas. The known semi-empirical equations described size dependence of nanoparticle properties were tested by a comparison of calculated and experimental data on iron nanoparticle evaporation temperature." @default.
- W2917339287 created "2019-03-02" @default.
- W2917339287 creator A5078866159 @default.
- W2917339287 creator A5082965663 @default.
- W2917339287 date "2019-04-01" @default.
- W2917339287 modified "2023-09-26" @default.
- W2917339287 title "Evaporation temperature depression with decrease of iron nanoparticle size. Validation of semi-empirical models" @default.
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- W2917339287 doi "https://doi.org/10.1016/j.matchemphys.2019.02.052" @default.
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