Research » Nanopowder Synthesis

Nanotechnology belongs to the key innovative technologies for powder production. Ultrasonic spray pyrolysis USP is a versatile method for the formation of nanosized particles of metals, oxides and composites. Our work deals with nanoparticles of Ag, Cu and Au formed by ultrasonic spray pyrolysis using the horizontal and vertical reactor. Furthermore, a direct synthesis of Ru-TiO2 and RuO2-TiO2 nanoparticles with the core and shell structure was investigated. Molar fractions of precursors, solvent type, and the process temperature play the crucial roles in the formation of core and shell structures. Moreover, the influence of the reaction parameters (temperature, residence time, concentration of solution and ultrasonic frequency) on the morphological characteristics of the prepared nanoparticles was studied. A decrease in the solution concentration decreases the final nanoparticle size. An increase in temperature from 150°C to 1000°C leads from an irregular form to a more spherical one. Subsequently, a model of metallic nanoparticle formation from an aerosol droplet could be proposed. Using USP, ideal spherical metallic particles were obtained at temperatures above the melting point. A scanning mobility particle sizer was used for the on-line determination of nanoparticle size distribution. The collection of nanosized particles was performed in an electrostatic field. Nanotechnology belongs to the key innovative technologies for powder production. Ultrasonic spray pyrolysis USP is a versatile method for the formation of nanosized particles of metals, oxides and composites. Our work deals with nanoparticles of Ag, Cu and Au formed by ultrasonic spray pyrolysis using the horizontal and vertical reactor. Furthermore, a direct synthesis of Ru-TiO2 and RuO2-TiO2 nanoparticles with the core and shell structure was investigated. Molar fractions of precursors, solvent type, and the process temperature play the crucial roles in the formation of core and shell structures. Moreover, the influence of the reaction parameters (temperature, residence time, concentration of solution and ultrasonic frequency) on the morphological characteristics of the prepared nanoparticles was studied. A decrease in the solution concentration decreases the final nanoparticle size. An increase in temperature from 150°C to 1000°C leads from an irregular form to a more spherical one. Subsequently, a model of metallic nanoparticle formation from an aerosol droplet could be proposed. Using USP, ideal spherical metallic particles were obtained at temperatures above the melting point. A scanning mobility particle sizer was used for the on-line determination of nanoparticle size distribution. The collection of nanosized particles was performed in an electrostatic field.

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Publications

YearPublications
2020
article in scientific journal
Metals : open access journal 10(6), Seiten/Artikel-Nr.:719 Special Issue "Advances in Synthesis of Metallic, Oxidic and Composite Powders" DOI: 10.18154/RWTH-2020-05906
Marija Korac, Zeliko Kamberovic, Zoran Andic, Srecko Stopic
2020
article in scientific journal
VOJNOTEHNIČKI GLASNIK / MILITARY TECHNICAL COURIER, 2020, Vol. 68, Issue 4 DOI: 10.5937/vojtehg68-27948
2020
article in scientific journal
Metals 2020, 10, 719 DOI:10.3390/met10060719
Marija Korać, Želko Kamberović, Zoran Andic, Srecko Stopic
2020
article in scientific journal
Advances in Materials and Processing Technologies DOI: 10.1080/2374068X.2020.1740877
Brian Freeland, R. McCann, Gözde Alkan, Bernd Friedrich, Greg Foley, Dermot Brabazon
2019
article in scientific journal
Materials 2020, 13, 38; DOI: 10.3390/ma13010038
Elif Emil Kaya, Ozan Kaya, Gözde Alkan, Sebahattin Gürmen, Srecko Stopic, Bernd Friedrich
2019
article in scientific journal
Materials 2019, 12(20), 3326; DOI: 10.3390/ma12203326
Bernd Friedrich, Peter Majerič, Darja Feizpour, Žiga Jelen, Ivan Anžel, Rebeka Rudolf
2019
article in scientific journal
Advanced Powder Technology 30 (2019), S. 1409–1418
Gözde Alkan, Lidija Mancic, Sayaka Tamura, Koji Tomita, Zhenquan Tan, Feifei Sun, Rebeka Rudolf, Satoshi Ohara, Bernd Friedrich , Oliviera Milosevic
2018
poster
Conference: 8th NRW Nano Conference
2018
article in scientific journal
Metals. 2018, vol. 8, iss. 4, str. 1-13. ISSN 2075-4701; DOI: 10.3390/met8040278
Peter Majeric, Darja Jenko, Bernd Friedrich, Rebeka Rudolf
2018
article in scientific journal
Drying Technology, DOI: 10.1080/07373937.2017.1292520
Peter Majerič, Rebeka Rudolf, Bernd Friedrich, Primoz Ternik

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