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Synthesis of mullite nanostructured spherical powder by ultrasonic spray pyrolysis

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Authors
Janaćković, Đorđe
Jokanović, Vukoman
Kostić-Gvozdenović, Ljiljana
Uskoković, Dragan
Article (Published version)
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Abstract
In this paper the synthesis of nanostructured spherical particles of mullite powders by ultrasonic spray pyrolysis is presented. The mullite crystallization and the nanostructure development during heating were examined by infrared spectroscopy, X-ray diffraction, scanning and transmission electron microscope analysis. Comparative analysis of experimentally determined and theoretically calculated particle size distribution, obtained on the basis of three-dimensional (3D) model of spherical/ellipsoidal waves generated by incident ultrasonic field, confirmed that the process of aerosol/powder particle synthesis can be regarded as deterministic process.
Source:
Nanostructured Materials, 1998, 10, 3, 341-348
Publisher:
  • Pergamon-Elsevier Science Ltd, Oxford

DOI: 10.1016/S0965-9773(98)00074-9

ISSN: 0965-9773

WoS: 000075398900003

Scopus: 2-s2.0-0032036112
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URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/211
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Janaćković, Đorđe
AU  - Jokanović, Vukoman
AU  - Kostić-Gvozdenović, Ljiljana
AU  - Uskoković, Dragan
PY  - 1998
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/211
AB  - In this paper the synthesis of nanostructured spherical particles of mullite powders by ultrasonic spray pyrolysis is presented. The mullite crystallization and the nanostructure development during heating were examined by infrared spectroscopy, X-ray diffraction, scanning and transmission electron microscope analysis. Comparative analysis of experimentally determined and theoretically calculated particle size distribution, obtained on the basis of three-dimensional (3D) model of spherical/ellipsoidal waves generated by incident ultrasonic field, confirmed that the process of aerosol/powder particle synthesis can be regarded as deterministic process.
PB  - Pergamon-Elsevier Science Ltd, Oxford
T2  - Nanostructured Materials
T1  - Synthesis of mullite nanostructured spherical powder by ultrasonic spray pyrolysis
EP  - 348
IS  - 3
SP  - 341
VL  - 10
DO  - 10.1016/S0965-9773(98)00074-9
ER  - 
@article{
author = "Janaćković, Đorđe and Jokanović, Vukoman and Kostić-Gvozdenović, Ljiljana and Uskoković, Dragan",
year = "1998",
abstract = "In this paper the synthesis of nanostructured spherical particles of mullite powders by ultrasonic spray pyrolysis is presented. The mullite crystallization and the nanostructure development during heating were examined by infrared spectroscopy, X-ray diffraction, scanning and transmission electron microscope analysis. Comparative analysis of experimentally determined and theoretically calculated particle size distribution, obtained on the basis of three-dimensional (3D) model of spherical/ellipsoidal waves generated by incident ultrasonic field, confirmed that the process of aerosol/powder particle synthesis can be regarded as deterministic process.",
publisher = "Pergamon-Elsevier Science Ltd, Oxford",
journal = "Nanostructured Materials",
title = "Synthesis of mullite nanostructured spherical powder by ultrasonic spray pyrolysis",
pages = "348-341",
number = "3",
volume = "10",
doi = "10.1016/S0965-9773(98)00074-9"
}
Janaćković, Đ., Jokanović, V., Kostić-Gvozdenović, L.,& Uskoković, D.. (1998). Synthesis of mullite nanostructured spherical powder by ultrasonic spray pyrolysis. in Nanostructured Materials
Pergamon-Elsevier Science Ltd, Oxford., 10(3), 341-348.
https://doi.org/10.1016/S0965-9773(98)00074-9
Janaćković Đ, Jokanović V, Kostić-Gvozdenović L, Uskoković D. Synthesis of mullite nanostructured spherical powder by ultrasonic spray pyrolysis. in Nanostructured Materials. 1998;10(3):341-348.
doi:10.1016/S0965-9773(98)00074-9 .
Janaćković, Đorđe, Jokanović, Vukoman, Kostić-Gvozdenović, Ljiljana, Uskoković, Dragan, "Synthesis of mullite nanostructured spherical powder by ultrasonic spray pyrolysis" in Nanostructured Materials, 10, no. 3 (1998):341-348,
https://doi.org/10.1016/S0965-9773(98)00074-9 . .

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