National Repository of Grey Literature 156 records found  beginprevious55 - 64nextend  jump to record: Search took 0.01 seconds. 
Study of Thin-Film Surfaces
Trivedi, Rutul Rajendra ; Fejfar, Antonín (referee) ; Klapetek, Petr (referee) ; Šikola, Tomáš (referee) ; Čech, Vladimír (advisor)
Disertační práce se zabývá studiem povrchových vlastností jedno a vícevrstvých filmů deponovaných z vinyltriethoxysilanových a tetravinylsilanových monomerů. Zabývá se také charakterizací adheze jednovrstvých filmů z tetravinylsilanu. Plazmaticky polymerizované tenké vrstvy byly připraveny na leštěných křemíkových substrátech pomocí plazmové depozice z plynné fáze za ustálených podmínek. Povrchové vlastnosti vrstev byly charakterizovány pomocí různých metod rastrovací sondové mikroskopie a nanoindentačních technik jako je konvenční a cyklická nanoindentace. Vrypový test byl použit pro charakterizaci vlastností adheze vrstev. Jednovrstvé filmy připravené za různých depozičních podmínek byly charakterizovány s ohledem na povrchové morfologie a mechanické vlastností (modul pružnosti, tvrdost). Výsledky morfologie povrchu, analýzy zrn, nanoindentace, analýzy konečných prvků a modulů mapování pomohly rozlišit hybridní charakter filmů, které byly deponovány při vyšších výkonech RF-výboje. Nový přístup byl použit v povrchové charakterizaci vícevrstvého filmu pomocí rastrovací sondové mikroskopie a nanoindentace. Adhezívní chování plazmaticky polymerizovaných vrstev různých mechanických vlastností a tloušťek bylo analyzováno pomocí normálních a laterálních síl, koeficientu tření, a snímků vrypů získaných pomocí mikroskopie atomárních sil.
Surface and Mechanical Properties of Thin Films
Pálesch, Erik ; Klapetek, Petr (referee) ; Skuhurov,, Andrey (referee) ; Čech, Vladimír (advisor)
The doctoral thesis deals with the study of morphology and mechanical properties of thin plasma polymer films based on tetravinylsilane monomer and its mixtures with oxygen and argon. Thin films were prepared by plasma-enhanced chemical vapour deposition on silicon and glass substrates. Atomic force microscopy was used for characterization of thin film surface and for depiction of composite interphase with functional interlayer. Mechanical properties of thin films, namely Young’s modulus and hardness, were studied by cyclic nanoindentation technique. Nanoindentation device was also used to carry out scratch test, which was helpful to describe adhesion of films to substrate. In this thesis the influence of deposition conditions on surface and mechanical properties of thin films prepared in continual and pulse wave on planar substrates is discussed. Also, the suitability of few atomic force microscopy techniques for depiction of composite interphase was reviewed.
The deposition of Al and AlN ultrathin layers on silicon and graphene substrate
Řihák, Radek ; Čech, Vladimír (referee) ; Mach, Jindřich (advisor)
This master's thesis deals with preparation and analysis of ultrathin films of aluminum and aluminum nitride. Films were prepared by effusion cells designed in previous bachelor's thesis. Cell construction and testing is included in this thesis. Behavior of aluminum on silicon dioxide, silicon and graphene was studied. Preparation of aluminum nitride by effusion cell and nitrogen ion source is described.
Low Energy Ion Scattering on Gold Structures
Joch, Vítězslav ; Čech, Vladimír (referee) ; Průša, Stanislav (advisor)
This diploma thesis deals with comparison of experimental and simulated low energy ion scattering spectra. There is a theoretical description of basic principles of low energy ion scattering and description of the spectrometer, which is situated at Institute of physical engineering. It is shown, how to prepare samples using the colloidal gold solution. The deposition of gold nanoparticles is characterized. The usage and meaning of time and energy spectra of low energy ion scattering is explained. There is also shown the effect of channeling in Si substrate.
Characterization of 1-D Nanostructures by SPM Methods
Škoda, David ; Čech, Vladimír (referee) ; Pavlík, Jaroslav (referee) ; Dub, Petr (advisor)
The thesis is aimed at the characterization of carbon nanotubes and silver nanowires by Scanning Probe Microscopy, namely Scanning Tunneling Microscopy (STM), Atomic Force Microscopy (AFM), Conductive AFM (CAFM) and Scanning Near-Field Optical Microscopy (SNOM). Carbon nanotubes were analyzed by STM, AFM and CAFM microscopy. In a designed apparatus the silver nanowires were fabricated by template assisted deposition and were analyzed with respect to their geometry (AFM), local conductivity (CAFM) and optical properties (SNOM, microreflex spectroscopy). It was found that preferential type of carbon nanowires depends on the fabrication process. The measurements of local conductivity of the nanotubes revealed the similarity with the STM measurements. The AFM measurements of silver nanowires confirmed their growth inside the pores of polycarbonate template. Single nanowires exhibits the semiconducting behavior according to I--V measurement and localized plasmon resonances.
Deposition and optical properties of thin films and layered structures by PECVD
Kucharčík, Jan ; Boušek, Jaroslav (referee) ; Čech, Vladimír (advisor)
Thesis in theoretical part is focused on the principle of spectroscopic ellipsometry and formation of thin films by plasma-enhanced chemical vapor deposition (PECVD). In the experimental part we describe the deposition system, ellipsometer and mathematical evaluation of ellipsometric data, materials used for film formation and processing of the samples. Single-layer and multilayer structures of polymeric materials were prepared. We revealed that the optical properties of thin films are independent of film thickness. We also described the effect of the effective power and deposition gas mixture on optical properties of thin films.
Deposition of plasma polymer films
Malá, Michaela ; Brablec, Antonín (referee) ; Čech, Vladimír (advisor)
This bachelor thesis is focused on the characterization and preparation of thin polymer layers deposited by plasma-enhanced chemical vapor deposition on silicon wafer. The main part of the work is a literature review about the plasma polymerization and methods of characterization of thin polymer layers. In the experimental section were prepared thin layers of polymer from the monomer vapor of tetravinylsilane. Prepared thin films were characterized by microscopic and spectroscopic techniques. The physical and chemical properties of deposited films were studied with respect to the deposition conditions in low-temperature plasma.
Adhesion of plasma polymer films deposited from tetravinylsilane monomer
Plichta, Tomáš ; Salyk, Ota (referee) ; Čech, Vladimír (advisor)
This bachelor thesis deals with the characterization of thin films of plasma polymers prepared from monomers of tetravinylsilane (TVS) and deposited on planar silicon substrates. Plasma enhanced chemical vapor deposition (PE CVD) was used as a method of thin films preparation. Three power series were prepared from pure TVS and two mixtures TVS with argon and oxygen. The main characterization methods were scratch tests and atomic force microscopy (AFM) is used to assess the adhesion degree of the layers and topography of scratches. To assess the characteristics and context the layer thickness was measured by spectroscopic ellipsometry (ELL) and elastic modulus using nanoindentation. The collected data were used to assess the reproducibility of the results with the regard to the purity of substrates and adhesion layers, depending on the deposition conditions and layers aging.
Application of oxygen atomic beams
Mikerásek, Vojtěch ; Čech, Vladimír (referee) ; Mach, Jindřich (advisor)
V diplomové práci je popsán návrh, konstrukce a testování termálního zdroje svazku atomárního kyslíku, který je určen k růstu tenkých oxidových vrstev v podmínkách ultra vysokého vakua. První kapitola pojednává o teorii spjaté s termální disociací a tvorbou atomárních svazků. Dále jsou uvedeny hlavní typy zdrojů svazků atomárního kyslíku a jeho aplikace. Experimentální část je věnována samotnému návrhu zařízení, konstrukci a jeho složení. V poslední část je popsáno testování vlivu atomárního kyslíku na vznik oxidových vrstev (stechiometricky Ga2O3) na nanokapičkách Ga na křemíkovém substrátu připraveného molekulární svazkovou epitaxí. Chemické složení a morfologie připravených nanostruktur jsou zkoumány metodou XPS, SEM a TEM.
Possibilities of preparing nanoelectronic devices on graphene using AFM
Lipták, Daniel ; Čech, Vladimír (referee) ; Bartošík, Miroslav (advisor)
V tejto diplomovej práci sme sa zamerali na štúdiu a prípravu nano-štruktúr na graféne pomocou lokálnej anodickej oxidácie. Naša pozornosť bola venovaná izolačným schopnostiam oxidovaného grafénu, ktorý bol študovaný pomocou mapovania povrchového napätia, využívaním sondovej mikroskopie Kelvinovej sily, a súčasným meraním toku nosičov nábojov. Získané výsledky poukazujú na zdvojnásobnenie odporu pri čiarovom oxidovom prerušení. Ku koncu, nano-zúženie s mikrometrovými rozmermi bolo vyrobené a študované pod rôznymi vlhkosťami, v rozmedzí 3% až 60%.

National Repository of Grey Literature : 156 records found   beginprevious55 - 64nextend  jump to record:
See also: similar author names
1 Čech, Viktor
3 Čech, Vlastimil
8 Čech, Vojtěch
2 Čech, Vratislav
2 Čech, Václav
1 Čech, Vít
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