825 resultados para grafene CVD schiume
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Três tipos de diamantes foram observados neste trabalho, para determinar qual apresenta a melhor relação entre desgaste e tempo de vida de um dressador de ponta única. A metodologia empregou o dressamento de um rebolo de óxido de alumíno e, a cada vinte passes, com avanço da profundidade de dressagem de 40 μm por passe, registrou uma imagem da ponta da ferramenta em um estereoscópio. O dressador foi então recolocado na retificadora para a realização de novas dressagens até o fim de vida do diamante. O critério para o fim do ensaio foi o faiscamento gerado pelo contato do rebolo com a base do dressador. Foram realizados três ensaios para cada tipo de diamante. O Mato Grosso apresentou os maiores desgastes de área, e o Brasil Extra, o menor. O CVD nacional teve desempenho parecido com o do Brasil Extra, mas com tempo maior de dressagem nos ensaios. Ou seja, apresentou baixo desgaste e durabilidade maior.
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Os dados para este estudo foram obtidos mediante a implantação de um sistema de monitoramento por emissão acústica em uma retificadora plana tangencil. A dressagem foi realizada em rebolos convencionais e os resultados foram analisados tomando por base a relação com o desgaste volumétrico sofrido pelo diamante do dressador. As análises foram realizadas nos diamantes naturais dos tipos Brasil Extra e Mato Grosso e no sintético do tipo CVD. Os dados da emissão acústica de cada dressador foram divididos em faixas de frequência para filtrar possíveis interferências. Utilizando a faixa mais apropriada, foi possível elaborar uma curva característica para cada dressador e relacionar o desgaste do diamante com o sinal RMS da emissão acústica na faixa de frequência analisada.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Silicon carbide (SiC) is considered a suitable candidate for high-power, high-frequency devices due to its wide bandgap, high breakdown field, and high electron mobility. It also has the unique ability to synthesize graphene on its surface by subliming Si during an annealing stage. The deposition of SiC is most often carried out using chemical vapor deposition (CVD) techniques, but little research has been explored with respect to the sputtering of SiC. Investigations of the thin film depositions of SiC from pulse sputtering a hollow cathode SiC target are presented. Although there are many different polytypes of SiC, techniques are discussed that were used to identify the film polytype on both 4H-SiC substrates and Si substrates. Results are presented about the ability to incorporate Ge into the growing SiC films for the purpose of creating a possible heterojunction device with pure SiC. Efforts to synthesize graphene on these films are introduced and reasons for the inability to create it are discussed. Analysis mainly includes crystallographic and morphological studies about the deposited films and their quality using x-ray diffraction (XRD), reflection high energy electron diffraction (RHEED), transmission electron microscopy (TEM), scanning electron microscopy (SEM), atomic force microscopy (AFM), Auger electron spectroscopy (AES) and Raman spectroscopy. Optical and electrical properties are also discussed via ellipsometric modeling and resistivity measurements. The general interpretation of these analytical experiments indicates that the films are not single crystal. However, the majority of the films, which proved to be the 3C-SiC polytype, were grown in a highly ordered and highly textured manner on both (111) and (110) Si substrates.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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The association between major depressive disorder (MDD) and cardiovascular disease (CVD) is among the best described medical comorbidities. The presence of MDD increases the risk of cardiac admissions and mortality and increases healthcare costs in patients with CVD, and similarly, CVD affects the course and outcome of MDD. The potential shared biological mechanisms involved in these comorbid conditions are not well known. However, the enzyme monoamine oxidase-A (MAO-A), which has a key role in the degradation of catecholamines, has been associated with the pathophysiology and therapeutics of both MDD and CVD. Increased MAO-A activity results in the dysregulation of downstream targets of this enzyme and thus affects the pathophysiology of the two diseases. These deleterious effects include altered noradrenaline turnover, with a direct elevation in oxidative stress parameters, as well as increased platelet activity and cytokine levels. These effects were shown to be reversed by MAO inhibitors. Here, a model describing a key role for the MAO-A in comorbid MDD and CVD is proposed, with focus on the shared pathophysiological mechanisms and the potential therapeutic relevance of agents targeting this enzyme.
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We have investigated the magnetic and transport properties of nanoscaled Fe3O4 films obtained from Chemical Vapor Deposition (CVD) technique using [(FeFe2III)-Fe-II(OBut)(8)] and [Fe-2(III)(OBut)(6)] precursors. Samples were deposited on different substrates (i.e., MgO (001), MgAl2O4 (001) and Al2O3 (0001)) with thicknesses varying from 50 to 350 nm. Atomic Force Microscopy analysis indicated a granular nature of the samples, irrespective of the synthesis conditions (precursor and deposition temperature, T-pre) and substrate. Despite the similar morphology of the films, magnetic and transport properties were found to depend on the precursor used for deposition. Using [(FeFe2III)-Fe-II(OBut)(8)] as precursor resulted in lower resistivity, higher M-S and a sharper magnetization decrease at the Verwey transition (T-V). The temperature dependence of resistivity was found to depend on the precursor and T-pre. We found that the transport is dominated by the density of antiferromagnetic antiphase boundaries (AF-APB's) when [(FeFe2III)-Fe-II(OBut)(8)] precursor and T-pre = 363 K are used. On the other hand, grain boundary-scattering seems to be the main mechanism when [Fe-2(III)(OBut)(6)] is used. The Magnetoresistance (MR(H)) displayed an approximate linear behavior in the high field regime (H > 796 kA/m), with a maximum value at room-temperature of similar to 2-3 % for H = 1592 kA/m, irrespective from the transport mechanism.
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Deutsche Forschungsgemeinschaft [SFB 840]
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The clinical decision to control risk factors for cardiovascular disease (CVD) in the elderly takes the followings into consideration: (1) the elderly life expectancy; (2) the elderly biological age and functional capacity; (3) the role of cardiovascular disease in the elderly group; (4) the prevalence of risk factors in the elderly; and (5) The effectiveness of treatment of risk factors in the elderly. A large number of studies showed the efficacy of secondary and primary prevention of dyslipidemia in the elderly. However, the only trial that included patients over 80 years was the Heart Protection Study (HPS). Statins are considered the first line therapy for lowering low-density lipoprotein cholesterol (LDL-C). Because lifestyle changes are very difficult to achieve, doctors in general tend to prescribe many drugs to control cardiovascular risk factors. However, healthy food consumption remains a cornerstone in primary and secondary cardiovascular prevention and should be implemented by everyone.
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Introduction. Cardiovascular disease (CVD) represents the main cause of morbidity and mortality in kidney recipients. This study was undertaken to assess the impact of functional polymorphisms located in cytokine and apoptosis genes on CVD after kidney transplantation. Cytokine polymorphisms, generally located in gene regulatory regions, are associated with high and low cytokine production and are likely to modulate the magnitude of inflammatory responses following transplantation, depending on the balance between the levels of pro-inflammatory and antiinflammatory cytokines. The role of apoptosis in atherosclerosis has not been completely elucidated, and here we explored the hypothesis that the heterogeneity in cardiovascular risk in kidney recipients may also be linked to functional polymorphisms involved in apoptosis induction. Purpose. In the search for relevant genetic markers of predisposition to CVD after renal transplant, the present investigation was undertaken to identify the clinical impact of polymorphisms of cytokines TNF-α, TGF-β, IL-10, IL-6, IFN-γ and IL-8 and of apoptosis genes Fas and Caspase 9 in a population of kidney transplant recipients. Materials and methods. The study involved 167 patients who received cadaveric kidney transplantation at our centre between 1997 and 2005 (minimum follow-up of 12 months); 35 of them had experienced cardiovascular events (CVD group) and 132 had no cardiovascular complications (non-CVD group). Genotyping was performed using RFLP (Restriction Fragment Length Polymorphism) for RFLP per IL-8/T-251A, Fas/G-670A e Casp9/R221Q polymorphism and SSP (Sequence Specific Primer) for TNF-α/G-308A, TGF-β/L10P, TGF-β/R25P, IL-10/G-1082A, IL- 10/C-819T, IL-10/C-592A, IL-6/G-174C, IFN-γ/T+874A polymorphisms.Results. We found a significant difference in TNF-α and IL-10 genotype frequencies between the patients who had suffered cardiovascular events and those with no CVD history. The high producer genotype for proflogistic cytokine TNF-α appeared to have a significantly superior prevalence in the CVD group compared to the non-CVD group (40.0% vs 21.2%) and it resulted in a 2.4-fold increased cardiovascular risk (OR=2.361; p=0.0289). On the other hand, the high producer genotype for the antiinflammatory cytokine IL-10 was found in 2.8% of the CVD group and in 16.7% of non-CVD group; logistic regression showed a 0.3-fold reduced risk of CVD associated with genetically determined high IL-10 production (OR=0.278; p<0.0001). The other polymorphisms did not prove to have any impact on CVD. Conclusions. TNF-α and IL-10 gene polymorphisms might represent cardiovascular risk markers in renal transplant recipients.
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Spontane-Desorption-Massenspektrometrie zur Charakterisierung von gemischten, selbstorganisierten Schichten zur Metallabscheidung und zur Beobachtung von chemischen Reaktionen in dünnsten Filmen Stephan Krämer Ein Ziel dieser Arbeit war es, selbstorganisierte Schichten aus steifen benzolhaltigen Thiolen herzustellen und zu charakterisieren. Diese selbstorganisierten Schichten sollten als optimale Substrate zur Abscheidung von Metallen durch CVD dienen.In einem ersten Schritt wurden Schichten aus Biphenylthiol (BT) und Biphenyldithiol (BDT) auf Edelmetalloberflächen hergestellt. Die Abhängigkeit der Eigenschaften der Schicht von dem verwendeten Substrat und von der Dauer der Selbstorganisation wurde mit der Spontane-Desorption-Massenspektrometrie untersucht. Die Untersuchung der Schichtdicke erfolgte mit Oberflächenplasmonen-Spektroskopie und die Frage der Struktur der Schichten wurde versucht, mit Hilfe der Fourier-Transform-Infrarot-Spektroskopie zu klären. Nach der Charakterisierung der reinen Schichten wurden binäre Mischungen aus BT und BDT hergestellt und auf Goldoberflächen abgeschieden. Die so hergestellten binären Schichten wurden als Substrate zur Abscheidung von Gold benutzt. Dazu wurde mit Hilfe der CVD-Technik Gold auf den Filmen abgeschieden. Im nächsten Schritt wurden die einfacheren Halogen-substituierten Phenylthiole sowohl als reine Schichten als auch als binäre Mischungen untersucht. Ein weiterer Schwerpunkt stellte die Untersuchungen zur Abscheidung von Metallen auf selbstorganisierten Schichten durch CVD dar. Neben der schon vorgestellten Abscheidung von Gold wurde die Abscheidung von Palladium und von Kupfer untersucht. Im letzten Teil dieser Arbeit wurden der Verlauf einer chemischen Reaktion in einem ultradünnen Polymerfilm beobachtet. Dazu wurden die Vernetzungsreaktion und die Hydrolyse des Copolymer P[tBMA1-co-DMIMA0,11] untersucht.
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Ein Schwerpunkt der in dieser Arbeit durchgeführten Analysen konzentrierte sich auf den Einfluss der Kohlenstoffschichtdicke auf die resultierenden Schichteigenschaften. Dies erfolgte vor dem Hintergrund, dass ein Anstieg der Speicherdichte auf 100 Gbits/in2 mit einer Dickenreduzierung der magnetisch inaktiven Kohlenstoffschutzschichten auf 2 nm verbunden ist. Im Rahmen der Charakterisierung von wasserstoffhaltigen, mittels einem CVD-Netzhohlkathodenreaktor abgeschiedenen Schichten, wurde eine zuverlässige Anwen-dung der XRR zur Dickenbestimmung ultradünner Kohlenstoffschichten im Bereich von 2-20 nm demonstriert. Die konsistente Verwendung eines optischen Einschichtmodells deutet auf eine homogene Tiefenstruktur ohne deutliche Ausprägung von scharf defi-nierten Grenzflächenbereichen zum Substrat und zur Oberfläche hin. Die Analyse des Schichtdickeneinflusses ergab eine leichte Verminderung der Kratz-härte sowie einen Rückgang des Elastizitätsmoduls von 90 GPa auf etwa 60 GPa, wenn die Schichtdicken bei Raumtemperaturabscheidung von 17 nm auf 2 nm reduziert wer-den. Diese Ergebnisse stehen in guter Übereinstimmung mit gewonnen ramanspektro-skopischen Resultaten, die einen ansteigenden sp2-Bindungsanteil für abnehmende Schichtdicken belegen. Die Charakterisierung von wasserstofffreien, gepulsten Vakuumbogen-Schichten ergab ein heterogenes Tiefenprofil, bestehend aus Oberflächen-, Bulk- und Interfacebereich. Diese Struktur führt zu einer Schichtdickenabhängigkeit von mechanischen und struktu-rellen Parametern, die über die gesamte Schichtdicke gemittelt werden. XRR-Analysen ergaben Bulkdichten von 2.8-3.0 g/cm3 bei Raumtemperaturabscheidung und 2.2 g/cm3 für eine Beschichtung von Speicherplatten bei einer Temperatur von 200 °C. Durchgeführte AFM-Messungen an Schichten auf Silizumsubstraten zeigten nahezu kei-ne Abhängigkeit der RMS-Oberflächenrauhigkeit von der Schichtdicke bis zu 18 nm und lieferten konstante Werte im Bereich der Substratrauhigkeit von etwa 0.1 nm. Bei der Beschichtung von Speicherplatten bewirkt eine Dickenabnahme der aufgebrachten Filme sogar einen glättenden Einfluss auf die Oberflächentopographie. Der Elastizitätsmodul und die mittels Mehrwellenlängen-Ramanspektroskopie ermittelte Raman-G-Peak-Dispersion als Maße für Schichthärte und Schichtstruktur zeigen einen korrelierenden Abfall für verringerte Schichtdicken. Der Elastizitätsmodul fällt im Fall ei-ner Raumtemperaturabscheidung von etwa 450 GPa bei 20 nm Dicke auf ca. 50 GPa bei weniger als 2 nm Dicke ab. Diese Resultate werden durch röntgenabsorptionsspektro-skopische Untersuchungen der Kohlenstoff-K-Kante bestätigt. Kombinierte XPS- und XANES-Analysen der Bedeckungsqualität von Vakuumbogen-Schichten ergaben eine kritische Dicke von nur ca. 1 nm. Bei einer Unterschreitung die-ses Dickenwertes kann eine vollständige Bedeckung bzw. der Korrosionsschutz des un-terliegenden metallischen Mediums nicht mehr uneingeschränkt gewährleistet werden. XPS-Referenzmessungen an konvenzionellen CNx-Schichten weisen demgegenüber oxidische Cobaltsignale bereits im Bereich von 2-3 nm nach.
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Il presente lavoro di tesi è frutto di una collaborazione fra il Dipartimento di Chimica Fisica ed Inorganica (gruppo del Prof. Valerio Zanotti – Mattia Vaccari, Dr. Rita Mazzoni) ed il Dipartimento di Chimica Industriale e dei Materiali (gruppo del Prof. Angelo Vaccari – Dr. Thomas Pasini, Dr. Stefania Albonetti, Prof. Fabrizio Cavani) e si inserisce il un progetto volto a valutare l’attività e la selettività del catalizzatore di idrogenazione di Shvo 1, verso l’idrogenazione selettiva del doppio legame polare del 5-idrossimetilfurfurale (HMF) in fase omogenea. L’HMF è un composto di natura organica facilmente ottenibile dalle biomasse, il quale può essere impiegato come building block per ottenere prodotti ad alto valore aggiunto per la chimica fine o additivi per biocarburanti aventi un elevato potere calorifico. In particolare la nostra attenzione si è rivolta alla produzione del 2,5-diidrossimetilfurano (BHMF), un importante building block per la produzione di polimeri e schiume poliuretaniche. Il lavoro di tesi da me svolto ha riguardato la messa a punto di una nuova metodologia sintetica per la preparazione del catalizzatore di Shvo e lo studio della sua attività catalitica nella riduzione di HMF a BHMF. Il comportamento del catalizzatore è stato monitorato studiando la resa in BHMF in funzione di tutti i parametri di reazione: temperatura, pressione di H2, solvente, rapporto molare substrato/catalizzatore, concentrazione, tempo. Successivamente è stata valutata la possibilità di riciclare il catalizzatore recuperando il prodotto di estrazione con acqua, per precipitazione o eseguendo la reazione in miscela bifasica (toluene/H2O). The present work is a collaboration between the Department of Physics and Inorganic Chemistry (group of Prof. Valerio Zanotti - Mattia Vaccari, Dr. Rita Mazzoni) and the Department of Industrial Chemistry and Materials (Group of Prof. Angelo Vaccari - Dr. Thomas Pasini, Dr. Stefania Albonetti, Prof. Fabrizio Cavani), and it’s a project devoted to evaluate the activity and selectivity of the Shvo catalyst, in the selective hydrogenation of polar double bond of 5 -hydroxymethylfurfural (HMF) in homogeneous phase. The HMF is an organic compound easily obtained from biomass, which can be used as a building block for fine chemicals abd polymer production or additives for biofuels with a high calorific value. In particular, our attention turned to the production of 2.5-bishydroxymethylfuran (BHMF), an important building block for the production of polymers and polyurethane foams. This thesis has involved the development of a new synthetic methodology for the preparation of Shvo’s catalyst and the study of its catalytic activity in the reduction of HMF to BHMF. The behavior of the catalyst was monitored by studying the yield in BHMF as a function of all the reaction parameters: temperature, pressure of H2, solvent, substrate to catalyst molar ratio, concentration, time. Subsequently it was evaluated the possibility of recycling the catalyst recovering the product of extraction with water, by precipitation or performing the reaction in biphasic mixture (toluene/H2O).