963 resultados para Microscópio de varredura por tunelamento de elétrons


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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Ciência dos Materiais - FEIS

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Neste trabalho foram eletrodepositados filmes ultrafinos de cobalto e níquel sobre substrato de Au/mica. Os estágios iniciais da deposição foram acompanhados in-situ pelo uso das técnicas de EC-STM (microscopia de varredura por tunelamento – modo eletroquímico) e EC-AGFM (magnetome tria de força de gradiente de campo alternado – modo eletroquímico), que se constitui em uma nova técnica para avaliação de propriedades magnéticas de filmes ultrafinos eletrodepositados. Como resultado, foi obtido o comportamento eletroquímico do eletrodo de Au/mica em meios contendo cobalto ou níquel, acrescidos ou não, dos aditivos: sacarina e tiouréia e a caracterização magnética dos filmes formados. Os dados obtidos por EC-STM revelaram a estrutura dos filmes de cobalto e níquel em baixa espessura (algumas monocamadas). A deposição de cobalto inicia com uma bicamada e o crescimento continua quase camada por camada. Para o caso do níquel o modo de crescimento está associado ao potencial aplicado: filmes crescidos em –1,1VMSE apresentaram nucleação instantânea, enquanto para –1,2VMSE foi observada nucleação progressiva. Pela análise dos dados obtidos por EC-AGFM, foi possível relacionar a estrutura dos filmes as suas propriedades magnéticas. Foi encontrada anisotropia magnética perpendicular somente para os filmes de cobalto em torno de 1,3ML de espessura. O efeito dos aditivos sacarina e tiouréia nas medidas magnéticas também foi estudado.

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Pós-graduação em Ciência e Tecnologia de Materiais - FC

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Pós-graduação em Ciência dos Materiais - FEIS

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Ciência e Tecnologia de Materiais - FC

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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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Pós-graduação em Química - IQ

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The development of nanostructured materials have aroused great interest of the industries all over the country, since they enable the development of devices that can be used as gate insulators on silicon transistors, electrochromic devices, solid electrolyte oxygen sensors and as a photoluminescent materials . In this project, it is proposed to investigate the optical properties of CeO2 modified with rare earth Er processed in hydrothermal-microwave. The synthesis of one-dimensional nanostructures (1D) was measured from dilute aqueous solutions of acids and salts of starting reagents in the presence of chemical basis, after these aqueous solutions were processed on hydrothermal-microwave to particle growth. The particles obtained after processing were characterized by X-ray Diffraction, Rietveld Analysis and Raman Spectroscopy. The particle morphology was observed by scanning electron microscopy with field emission gun. The synthesis of 1D nanostructures are evaluated for different surfactants and starting precursors (ceria different salts), pH, temperature and pressure which can modify the morphology of the nanostructures. Combining laboratory experiments and theoretical calculations it was desired to understand the organization of the nanoparticles and their resulting structure. Strict control of chemical homogeneity, crystal structure, microstructure and interaction of the CeO2 cluster with different surfactants using the Hartree-Fock method, was intended to obtain properties compatible with their use in catalysts and optical devices. The use of mineralizer agent KOH and 8 minutes of processing time synthesis conditions were chosen to evaluate the effect of Er dopant. It has been proved that this doping with rare earth increases the photoluminescent properties of the compound obtained without change the structural and morphological propreties of ceria

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The development of nanostructured materials have aroused great interest of the industries all over the country, since they enable the development of devices that can be used as gate insulators on silicon transistors, electrochromic devices, solid electrolyte oxygen sensors and as a photoluminescent materials . In this project, it is proposed to investigate the optical properties of CeO2 modified with rare earth Er processed in hydrothermal-microwave. The synthesis of one-dimensional nanostructures (1D) was measured from dilute aqueous solutions of acids and salts of starting reagents in the presence of chemical basis, after these aqueous solutions were processed on hydrothermal-microwave to particle growth. The particles obtained after processing were characterized by X-ray Diffraction, Rietveld Analysis and Raman Spectroscopy. The particle morphology was observed by scanning electron microscopy with field emission gun. The synthesis of 1D nanostructures are evaluated for different surfactants and starting precursors (ceria different salts), pH, temperature and pressure which can modify the morphology of the nanostructures. Combining laboratory experiments and theoretical calculations it was desired to understand the organization of the nanoparticles and their resulting structure. Strict control of chemical homogeneity, crystal structure, microstructure and interaction of the CeO2 cluster with different surfactants using the Hartree-Fock method, was intended to obtain properties compatible with their use in catalysts and optical devices. The use of mineralizer agent KOH and 8 minutes of processing time synthesis conditions were chosen to evaluate the effect of Er dopant. It has been proved that this doping with rare earth increases the photoluminescent properties of the compound obtained without change the structural and morphological propreties of ceria