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Description
  • Nanoparticles (NP's) have attracted considerable attention, because they show a quantum size effect, for which the physical and chemical properties are strongly dependent on particle size. This change of properties can also affect the toxicity and therefore NP's cannot be treated the same way as bulk material. In spite of that, inhalation studies of NP's are still rather rare. Recently, an exposure system for inhalation experiments was constructed in the Institute of Analytical Chemistry AS CR and the first experience with this system were reported by Večeřa et al., 2012. For these studies, a method of continual long-term generation of NP's in the gas phase is necessary. Methods for long-term generation of MnOx and Pb/PbOx NP's have recently been reported. The next task was to test the method for long-term generation of TiO2 NP's suitable for subsequent inhalation experiments.
  • Nanoparticles (NP's) have attracted considerable attention, because they show a quantum size effect, for which the physical and chemical properties are strongly dependent on particle size. This change of properties can also affect the toxicity and therefore NP's cannot be treated the same way as bulk material. In spite of that, inhalation studies of NP's are still rather rare. Recently, an exposure system for inhalation experiments was constructed in the Institute of Analytical Chemistry AS CR and the first experience with this system were reported by Večeřa et al., 2012. For these studies, a method of continual long-term generation of NP's in the gas phase is necessary. Methods for long-term generation of MnOx and Pb/PbOx NP's have recently been reported. The next task was to test the method for long-term generation of TiO2 NP's suitable for subsequent inhalation experiments. (en)
Title
  • A Comparison of Titania Nanoparticles Production in Two Different Reactors by MOCVD Method
  • A Comparison of Titania Nanoparticles Production in Two Different Reactors by MOCVD Method (en)
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  • A Comparison of Titania Nanoparticles Production in Two Different Reactors by MOCVD Method
  • A Comparison of Titania Nanoparticles Production in Two Different Reactors by MOCVD Method (en)
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  • RIV/67985858:_____/14:00433707!RIV15-GA0-67985858
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  • I, P(GBP503/12/G147)
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  • 632
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  • RIV/67985858:_____/14:00433707
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  • hot wall tube reactor; MOCVD; titania nanoparticles (en)
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  • [0F6A35625163]
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  • Valtice
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  • Prague
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  • Proceedings of 15th Annual Conference of the Czech Aerosol Society
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  • Koštejn, Martin
  • Levdansky, V. V.
  • Moravec, Pavel
  • Schwarz, Jaroslav
  • Smolík, Jiří
  • Vodička, Petr
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  • Czech Aerosol Society
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  • 978-80-86186-64-1
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