Národní úložiště šedé literatury Nalezeno 9 záznamů.  Hledání trvalo 0.00 vteřin. 
Emergence of dark ZnO nanorods by hydrogen plasma treatment
Remeš, Zdeněk ; Buryi, Maksym ; Sharma, Dhananjay K. ; Artemenko, Anna ; Mičová, J. ; Rezek, B. ; Poruba, A. ; Hsu, H.S. ; Potocký, Štěpán ; Babin, Vladimir
We employed a custom-built inductively coupled plasma (ICP) 13.56 MHz reactor with up to 300 W RF discharge power. Hydrothermally grown ZnO nanorods were exposed to the ICP plasma with a mixture of hydrogen and argon for up to 30 min, followed in-situ by plasma oxidation. Plasma properties were monitored by optical emission spectroscopy (OES) and by measuring the self-bias potential of the stainless steel sample holder separated from the ground by a blocking capacitor. The exciton-related UV photoluminescence of ZnO nanorods and optical absorption increases significantly after the plasma treatment. We attribute it to the complex changes of ZnO surface electronic states that also give rise to its black color visually.
Transformation of ZnO-based structures under heavy Mo doping: Defect states and luminescence
Buryi, Maksym ; Remeš, Zdeněk ; Děcká, Kateřina ; Mičová, J. ; Landová, Lucie
Hydrothermally grown ZnO-based structures were heavily doped with Mo (various doping levels from 2 to 25%). It has been found that Mo strongly affects the ZnO structure and morphology rather resulting in the complex, mixed zinc and molybdenum oxides creation. Moreover, the material phases transformation upon the increased Mo content was observed. ZnO material phase was observed only at low Mo doping level (2 and 5%). This correlated very well to the changes in the luminescence and electron paramagnetic resonance signals.
Kinetika rozkladu organofosfátu fenitrothionu v dekontaminujících pěnotvorných směsích
Míčová, Jitka ; Doležal, Pavel (vedoucí práce) ; Musilová, Marie (oponent)
Mgr. Jitka Míčová, kat. farm. technologie Rigorózní práce 2007, ( doc. Jiři Cabal; doc. Pavel Doležal) Kinetika rozkladu organofosfátu fenitrothionu v dekontaminujících pěnotvorných směsích Kinetic of decay of organophosphate fenitrothione in the decontaminating foaming mixtures SOUHRN Práce je věnována studiu kinetiky reakcí organofosfátu fenitrothionu s hydroperoxidovým aniontem v prostředí micel tvořených kationickým a neionickým tenzidem. U tenzidů typu benzalkonia byl sledován vliv délky alkylového lipofilního řetězce a u neionických tenzidů typu ethoxylovaných lineárních alkoholů byl sledován vliv délky akylového řetězce a vliv stupně ethoxylace. Rovněž byl hodnocen význam hmotnostních poměrů obou tenzidů v reakční směsi. Změna sledovaných parametrů způsobovala jen malé změny v reakční rychlosti, které tak nepřevyšovaly rozsah jednoho řádu. Bylo zjištěno, že parametr s podstatně větším vlivem, kterým lze rychlost reakce změnit i o několik řádů, je změna koncentrace peroxidu. Ve sledovaném rozsahu koncentrací závisí rychlost reakce fenitrothionu na koncentraci hydroperoxidového aniontu lineárně.
Plasma hydrogenation of hydrothermally grown ZnO micropods
Remeš, Zdeněk ; Aubrechtová Dragounová, Kateřina ; Mičová, J.
The hydrothermally grown ZnO micropods have been placed on grounded stainless-steel holder and exposed to an inductively coupled plasma (ICP) monitored in-situ by optical emission spectroscopy (OES). OES shows the immediate release of oxygen during Ar ion bombardment. The prolonged exposure to hydrogen plasma leads to deterioration of the optical properties as well. The exposure, rf power and hydrogen pressure have been optimized to enhance UV-photoluminescence peak at the wavelength 384 nm related to surface bounded excitons and reduce the defect-related photoluminescence in red spectral range. The strong UV photoluminescence appears just after 1 minute of plasma hydrogenation in a radio frequency plasma discharge with power density 40 W/dm3 and hydrogen pressure 17 Pa.
Mass production of hydrogenated ZnO nanorods
Chang, Yu-Ying ; Remeš, Zdeněk ; Míčová, J.
We have developed an inexpensive and efficient technology of hydrothermal growth of ZnO nanorods from zinc nitrate hexahydrate (Zn(NO3)2·6H2O), as a precursor and hexamethylenetetramine (HMTA) (C6H12N4), as a surfactant followed by plasma hydrogenation in a novel inductively coupled plasma (ICP) quartz reactor and equipped with the rotary sample holder to stir powder during plasma treatment. We have optimized the photoluminescence spectroscopy for measuring optical scattering samples with the high sensitivity, precise sample positioning and very low influence of the scattered excitation light. Here we present the latest results on the enhancement of the UV photoluminescence of the ZnO nanorods after plasma hydrogenation. The exciton-related photoluminescence has been significantly enhanced whereas the deep defect related yellow photoluminescence has been significantly decreased.\n
Comparison of microbial interactions of zinc oxide nanomaterials in various size and shape
Rutherford, D. ; Jíra, J. ; Mičová, J. ; Remeš, Zdeněk ; Hsu, H.S. ; Rezek, B.
Zinc oxide nanoparticles (ZnO NP) have shown great potential as a novel antibacterial material at a time when resistance towards conventional antibiotics is becoming more prevalent. We report bacteria inactivation by ZnO NP with novel hedgehog-like morphology using model gram-negative (E. coli) and gram-positive (S. aureus) bacteria. E. coli exposed to the novel ZnO hedgehog NP during growth resulted in 4 orders of magnitude reduction in viable cell concentration after 24 h, which is more than 2 orders higher reduction compared to commercially available ZnO NPs with nominal sizes from 50 nm to 20 um. There was a positive correlation between hedgehog NP concentration and bacteria cell concentration reduction within the range tested 0.1 – 1.0 mg/mL. S. aureus was less sensitive to ZnO NP exposure and inactivation effect of various ZnO NP, was comparable. The effect can be thus attributed to direct mechanical damage of the bacterial mebrane that is the most effective for the novel hedgehog ZnO NP. This conclusion was corroborated also by disk diffusion assays.\n
The photoluminescence and optical absorptance of plasma hydrogenated nanocrystalline ZnO thin films
Remeš, Zdeněk ; Chang, Yu-Ying ; Stuchlík, Jiří ; Mičová, J.
We have developed the technology of the deposition of the nominally undoped ZnO nanocrystalline thin films by DC reactive magnetron sputtering of Zn target in the gas mixture of argon and oxygen plasma. We have optimized the photoluminescence spectroscopy for measuring optically scattering thin layers with the high sensitivity, precise sample positioning and very low influence of the scattered excitation light. Here we present the latest results on the enhancement of the photoluminescence of the nanocrystalline ZnO thin films after plasma hydrogenation. The photoluminescence in near UV region has been enhanced whereas the deep defect related photoluminescence has been significantly decreased. We found good room temperature stability of the plasma hydrogenated ZnO nanocrystals in air, but fast degradation at elevated temperature\n
Preparation of zinc oxide nanorods colloid from thin layers
Mičová, Júlia ; Remeš, Zdeněk ; Chang, Yu-Ying ; Neykova, Neda
The interest in ZnO (zinc oxide) nanoparticles is increasing due to low cost of their processing as well as the ability of fabricating ZnO nanostructures with controllable morphology such as size, shape and orientation. Our choice of method of the preparation of the nanostructured thin ZnO layers is the hydrothermal growth of ZnO nanorods on glass substrates coated by the nucleation layer deposited by the reactive magnetron sputtering. We have developed and optimized conditions of the thin layer growth with controllable dimensions of nanorods followed by the ultrasound peeling. The colloid of ZnO nanorods was characterized by measuring the size of particles using the dynamic light scattering (DLS) and the scanning electron microscopy (SEM). We found that the dynamic light scattering (DLS) can’t be directly used for size evaluation of ZnO nanorods due to their non- sperical shape. \n
Kinetika rozkladu organofosfátu fenitrothionu v dekontaminujících pěnotvorných směsích
Míčová, Jitka ; Doležal, Pavel (vedoucí práce) ; Musilová, Marie (oponent)
Mgr. Jitka Míčová, kat. farm. technologie Rigorózní práce 2007, ( doc. Jiři Cabal; doc. Pavel Doležal) Kinetika rozkladu organofosfátu fenitrothionu v dekontaminujících pěnotvorných směsích Kinetic of decay of organophosphate fenitrothione in the decontaminating foaming mixtures SOUHRN Práce je věnována studiu kinetiky reakcí organofosfátu fenitrothionu s hydroperoxidovým aniontem v prostředí micel tvořených kationickým a neionickým tenzidem. U tenzidů typu benzalkonia byl sledován vliv délky alkylového lipofilního řetězce a u neionických tenzidů typu ethoxylovaných lineárních alkoholů byl sledován vliv délky akylového řetězce a vliv stupně ethoxylace. Rovněž byl hodnocen význam hmotnostních poměrů obou tenzidů v reakční směsi. Změna sledovaných parametrů způsobovala jen malé změny v reakční rychlosti, které tak nepřevyšovaly rozsah jednoho řádu. Bylo zjištěno, že parametr s podstatně větším vlivem, kterým lze rychlost reakce změnit i o několik řádů, je změna koncentrace peroxidu. Ve sledovaném rozsahu koncentrací závisí rychlost reakce fenitrothionu na koncentraci hydroperoxidového aniontu lineárně.

Viz též: podobná jména autorů
1 Mičová, Júlia
2 Míčová, Jitka
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