About: Nanoparticles of Iron (III) Oxides from Thermal Processes - Syntheses, Characterization and Applications     Goto   Sponge   NotDistinct   Permalink

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Description
  • Oxid železitý jako jedinečná polymorfní sloučenina poskytuje několik strukturních forem s různou velikostí částic a morfologií v závislosti na metodě jejich syntézy. Oxid železitý zejména ve formě nanočástic má široké využití v průmyslu, enviromentálních a biomedicínských aplikacích. Termicky indukované rozklady železo obsahujících sloučenin lze prezentovat jako jednoduché a levné způsoby přípravy nanočástic Fe2O3. Jsou popsány syntézy amorfního Fe2O3 termickým rozkladem hexakyanoželeznatanu amonného a -Fe2O3 reakcí Fe2(SO4)3 s NaCl v pevné fázi. Strukturní, magnetické a velikostně morfologické vlastnosti připravených nanoprášků byly studovány metodami RTG práškové difrakce, Fe Mössbauerovy spektroskopie, VSM, AFM, HRTEM a měřením BET specifické plochy povrchu. (cs)
  • Iron(III) oxide as the unique polymorphous compound gives several structural forms withvarious particle size and morphology depending on the synthetic route. Iron(III) oxides,particularly in the form of nanoparticles, are being widely used in industry, environmentalor biomedical applications. The thermally induced solid-state decompositions of ironcontainingmaterials are presented as the simple and cost-effective methods for preparationof Fe2O3 nanoparticles. Syntheses of amorphous Fe2O3 by thermal decomposition ofammonium ferrocyanide and b- Fe2O3 by solid-state reaction of Fe2(SO4)3 with NaCl aredescribed. Structural, magnetic, size-dependent and morphological properties of the aspreparednanopowders were monitored by XRD, Fe Mössbauer spectroscopy, VSMmagnetization measurements, AFM, HRTEM, and BET specific surface areameasurements.
  • Iron(III) oxide as the unique polymorphous compound gives several structural forms withvarious particle size and morphology depending on the synthetic route. Iron(III) oxides,particularly in the form of nanoparticles, are being widely used in industry, environmentalor biomedical applications. The thermally induced solid-state decompositions of ironcontainingmaterials are presented as the simple and cost-effective methods for preparationof Fe2O3 nanoparticles. Syntheses of amorphous Fe2O3 by thermal decomposition ofammonium ferrocyanide and b- Fe2O3 by solid-state reaction of Fe2(SO4)3 with NaCl aredescribed. Structural, magnetic, size-dependent and morphological properties of the aspreparednanopowders were monitored by XRD, Fe Mössbauer spectroscopy, VSMmagnetization measurements, AFM, HRTEM, and BET specific surface areameasurements. (en)
Title
  • Nanoparticles of Iron (III) Oxides from Thermal Processes - Syntheses, Characterization and Applications
  • Nanoparticles of Iron (III) Oxides from Thermal Processes - Syntheses, Characterization and Applications (en)
  • Nanočástice oxidu železitého v termických procesech - syntéza, charakterizace a aplikace (cs)
skos:prefLabel
  • Nanoparticles of Iron (III) Oxides from Thermal Processes - Syntheses, Characterization and Applications
  • Nanoparticles of Iron (III) Oxides from Thermal Processes - Syntheses, Characterization and Applications (en)
  • Nanočástice oxidu železitého v termických procesech - syntéza, charakterizace a aplikace (cs)
skos:notation
  • RIV/61989592:15310/05:00002194!RIV06-MSM-15310___
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  • 531930
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  • RIV/61989592:15310/05:00002194
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  • iron oxide nanoparticles; thermal decomposition; Mössbauer spectroscopy; environmental applications; superparamagnetism; b- Fe2O3 (en)
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  • [BE2D550C3F26]
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  • Florida
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  • Tuček, Jiří
  • Zbořil, Radek
  • Mašláň, Miroslav
  • Machala, Libor
  • Sharma, Virender
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number of pages
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  • Arisztotelész Publishing Co.
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  • 963-86670-4-4
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  • 15310
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