National Repository of Grey Literature 127 records found  beginprevious118 - 127  jump to record: Search took 0.00 seconds. 
Study of preparation and structure of nanofibers of inorganic and organic biomaterials
Ručková, Jana ; Částková,, Klára (referee) ; Cihlář, Jaroslav (advisor)
The aim of this Master’s thesis is to investigate the preparation and structure of nanofibres of inorganic and organic biomaterials. Nanofibres of polycaprolactone, chitosane and their composites with hydroxyapatite particle were prepared by centrifugal force spinning process, which uses centrifugal forces for nanofibres spinning. Designed nanofibres can be used in bone tissue engineering. Experimental activity has started with synthesis of hydroxyapatite nanoparticles and preparation of polymer solutions and composite suspensions at different concentrations. The solutions and the suspensions were characterized by density and viscosity which were changed in dependence on temperature and polymer concentration. The solutions and the suspensions were spun at varying speeds and using two different sizes of collectors. The dependence of spinneret head revolution speed, size of collectors and polymer concentration on nanofibres diameter was studied. Biological activity of polycaprolactone and hydroxyapatite/polycaprolactone nanofibres was tested by means of SBF.
Determination of additives in multicomponent electrospinning systems
Gajdová, Barbora ; Petr, Knotek (referee) ; Knotková,, Kateřina (advisor)
This bachelor thesis deals with methods of producing nanofibres from mixture of different polymers. Different methods of preparation and production nanofibres by 4SPIN® are described in theoretical part. Experimental part deals with incorporation of additives into fibred layer. There were four different dyes used in this thesis: brilliant green, erythrosine, riboflavin and eriochrom black. UV – VIS spectrophotometry was used to measure volume of additives in nanofiber layer.
Effect of pH on quantitative determination of additives in nanofibers
Grufíková, Jana ; Marek, Pokorný (referee) ; Knotková,, Kateřina (advisor)
The object of my thesis was to prepare a nanofiber layer with dye additives and to quantify the additive content in dependence on pH. The nanofiber layers with additives were prepared by means of electrospinning. The analysis of the additive content in samples was performed by UV-VIS spectrophotometry. Concretely Erythrosine, Eriochrome Black, Riboflavin and Brilliant Blue were analysed. Each of this colors has different chemical structure and charge. The pH was defined by use of buffers, namely acetate buffer (pH 5), phosphate buffer (pH 7,4) and carbonate buffer (pH 10). For Erythrosine and Eriochrome Black the research was extended to study the effect of ionic strength on the quantitative determination of these dyes. It was found that the quantity of the determined additive depends on the pH and also on the ionic strength. However, this dependency is different for each additive. This confirms the assumption of influenced chemical structure and charge by interaction with polymers and buffers used in this experiment. The accuracy of evaluation is influenced by the way of data processing.
Homogenity of aditives in nanofibres
Linha, Vojtěch ; Pokorný,, Marek (referee) ; Knotková,, Kateřina (advisor)
The goal of this thesis was to summarize basic options of fiber spinning and incorporation of additives. Options for nanofiber production by 4SPIN® are described along with particular electrodes for spinning in theoretical part. The experimental part was focused on influence of molecular structure of additives to incorporated volume of the substance. For this research four dye was used: erythrosine, riboflavin, briliant blue and eriochrom black. UV-Vis spectroscopy was used for evaluation of volume of aditives in nanofiber layer.
Semiconductor nanowire growth modelling
Kovács, Roland ; Bartošík, Miroslav (referee) ; Kolíbal, Miroslav (advisor)
This bachelor’s thesis deals with modelling of semiconductor nanowires growth. The work describes the mechanism of growth using the VLS method. The main objective is to simulate the distribution of eutectic material in a droplet in the initial stage of growth. Mathematical models describing different situations of material diffusion in the droplet were depeloped. The simulation model is programmed in MATLAB.
Influence of nanofibers on cement composites in fresh and hardened state
Lisztwanová, Ewa ; Dufka, Amos (referee) ; Bydžovský, Jiří (advisor)
This Bachelor thesis is focused on studying the use of various types of nanofibers in silicate matrix composites and their influence on basic parameters and microstructure. Thesis also experimentally verifies options of dispersion of carbon nanotubes by mechanical ways. The conclusion is complexly evaluated in the influence of carbon nanotubes on the parameters of fine-grained repair mortars.
Utilization of Nanofibres in the Traditional Ceramics Body
Sedláček, Daniel ; Stančík,, Hynek (referee) ; Sokolář, Radomír (advisor)
This thesis summarizes the current knowledge about ceramic composites with nanofibers. So far, most research focused on the reinforcement of hi-tech ceramics, such as carbides and nitrides, however, this traditional ceramics left behind. Due to the improving the efficiency of production of nanofibers and thus a drop in prices, companies consider their use even in a cheaper ceramic materials. Reinforcement of traditional ceramic shard could theoretically improve many characteristics, but there are absolute minimum of practical researches.
Hyaluronan nanofibers
Linhartová, Beáta ; Velebný, Vladimír (referee) ; Pekař, Miloslav (advisor)
This bachelor´s thesis deals with the most common methods of producing nanofibres, it presents an overview of these techniques and briefly desribes common models. It shows their advantages and disadvantages and tries to follow the develompent of nanofibres. This theoretical part is followed by an experimental one which describes concrete example of producing nanofibres.
Nové trendy při filtraci paliv pro vznětové motory
Klement, Jan
This diploma thesis is dealing of fluds filtration and using nanotextiles materials. Whis is made throught the electrospining methods usage for the filtrations of fuel. In the opening issues problemations of filration of motor Diesel. In the experimental part, analyses are carried out of the chosen nanotextilie materials for the filtration of motor and Bio Diesel. The results of liquid predicate the potential usage nanotextiles materials for the results cleaning motor and Bio Diesel. Experiments showes the hight results of filtration nanotextiles materials which is depand of modern Diesel injection systems.

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