Synthesis and deposition of ZnO based particles by aerosol spray pyrolysis
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1997
Authors
Milošević, Olivera
Gagic, V
Vodnik, J
Mitrović, Aleksandra

Karanović, Ljiljana C.

Stojanović, Biljana D

Živković, L
Article (Published version)

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Spray pyrolysis was used for the deposition of well defined submicronic to nanosize particles based on ZnO. The influence of the temperature in the range from 345 to 1165 K, solution concentration (0.004 and 1.5 mol dm(-3)) and the residence time on the particle morphology is discussed. X-ray diffraction, differential scanning calorimetry and scanning electron microscopy were used in particle characterization. With the presumption that certain particle morphology is formed during the evaporation/drying stage of spray pyrolysis, the corresponding mathematical model for droplets evaporation is developed and correlated with the empirical results.
Keywords:
synthesis / deposition / aerosol spray pyrolysisSource:
Thin Solid Films, 1997, 296, 1-2, 44-48Publisher:
- Elsevier Science Sa, Lausanne
DOI: 10.1016/S0040-6090(96)09358-3
ISSN: 0040-6090
WoS: A1997XC19400012
Scopus: 2-s2.0-0031095783
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Institut za multidisciplinarna istraživanjaTY - JOUR AU - Milošević, Olivera AU - Gagic, V AU - Vodnik, J AU - Mitrović, Aleksandra AU - Karanović, Ljiljana C. AU - Stojanović, Biljana D AU - Živković, L PY - 1997 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/37 AB - Spray pyrolysis was used for the deposition of well defined submicronic to nanosize particles based on ZnO. The influence of the temperature in the range from 345 to 1165 K, solution concentration (0.004 and 1.5 mol dm(-3)) and the residence time on the particle morphology is discussed. X-ray diffraction, differential scanning calorimetry and scanning electron microscopy were used in particle characterization. With the presumption that certain particle morphology is formed during the evaporation/drying stage of spray pyrolysis, the corresponding mathematical model for droplets evaporation is developed and correlated with the empirical results. PB - Elsevier Science Sa, Lausanne T2 - Thin Solid Films T1 - Synthesis and deposition of ZnO based particles by aerosol spray pyrolysis EP - 48 IS - 1-2 SP - 44 VL - 296 DO - 10.1016/S0040-6090(96)09358-3 ER -
@article{ author = "Milošević, Olivera and Gagic, V and Vodnik, J and Mitrović, Aleksandra and Karanović, Ljiljana C. and Stojanović, Biljana D and Živković, L", year = "1997", abstract = "Spray pyrolysis was used for the deposition of well defined submicronic to nanosize particles based on ZnO. The influence of the temperature in the range from 345 to 1165 K, solution concentration (0.004 and 1.5 mol dm(-3)) and the residence time on the particle morphology is discussed. X-ray diffraction, differential scanning calorimetry and scanning electron microscopy were used in particle characterization. With the presumption that certain particle morphology is formed during the evaporation/drying stage of spray pyrolysis, the corresponding mathematical model for droplets evaporation is developed and correlated with the empirical results.", publisher = "Elsevier Science Sa, Lausanne", journal = "Thin Solid Films", title = "Synthesis and deposition of ZnO based particles by aerosol spray pyrolysis", pages = "48-44", number = "1-2", volume = "296", doi = "10.1016/S0040-6090(96)09358-3" }
Milošević, O., Gagic, V., Vodnik, J., Mitrović, A., Karanović, L. C., Stojanović, B. D.,& Živković, L.. (1997). Synthesis and deposition of ZnO based particles by aerosol spray pyrolysis. in Thin Solid Films Elsevier Science Sa, Lausanne., 296(1-2), 44-48. https://doi.org/10.1016/S0040-6090(96)09358-3
Milošević O, Gagic V, Vodnik J, Mitrović A, Karanović LC, Stojanović BD, Živković L. Synthesis and deposition of ZnO based particles by aerosol spray pyrolysis. in Thin Solid Films. 1997;296(1-2):44-48. doi:10.1016/S0040-6090(96)09358-3 .
Milošević, Olivera, Gagic, V, Vodnik, J, Mitrović, Aleksandra, Karanović, Ljiljana C., Stojanović, Biljana D, Živković, L, "Synthesis and deposition of ZnO based particles by aerosol spray pyrolysis" in Thin Solid Films, 296, no. 1-2 (1997):44-48, https://doi.org/10.1016/S0040-6090(96)09358-3 . .