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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

S?ntese e caracteriza??o de espin?lios a base de Cu, Fe e Cr para pigmentos cer?micos

Costa, Asenete Frutuoso da 10 December 2010 (has links)
Made available in DSpace on 2014-12-17T14:06:56Z (GMT). No. of bitstreams: 1 AseneteFC_DISSERT.pdf: 1219908 bytes, checksum: bebef255f66d82cd8504a8398fd23379 (MD5) Previous issue date: 2010-12-10 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior / Inorganic pigment comprises a host lattice, which is part of the chromophore component (usually a transition metal cation) and possible components modifiers, which stabilize, add or restate the properties pigments. Among the materials with spinel, ferrites, and the chromite stand out, because they have broad technological importance in the area of materials, applicability, pigments, catalytic hydrogenation, thin film, ceramic tiles, among others. The present work, pigments containing CuFe2O4, CuCr2O4,e CuFeCrO4, were synthesized by a method that makes use of gelatin as organic precursor using their application to ceramic pigments. The pigments were characterized by X-ray diffraction (XRD), Infrared spectroscopy, scanning electron microscopy (SEM) spectroscopy in the UV-visible and Colorimetry. The results confirmed the feasibility of the synthetic route used, with respect to powders synthesized, there is the formation of spinel phase from 500?C, with an increase in crystallinity and the formation of other phases. The pigments were shown to be crystalline and the desired phases were obtained. The copper chromite have hues ranging from green to black according to the calcination temperature, while the copper chromite doped with iron had brownish. The ferrites showed copper color and darker brown to black, which may indicate an interesting factor because of the importance of black pigment / Pigmento inorg?nico ? formado por uma rede hospedeira, na qual se integra o componente crom?foro (normalmente um c?tion de metal de transi??o) e os poss?veis componentes modificadores, que estabilizam, conferem ou reafirmam as propriedades pigmentantes. Dentre os pigmentos, as estruturas tipo espin?lio se destacam por possuir ampla import?ncia tecnol?gica na ?rea de materiais, com aplica??o em pigmentos, cat?lise de hidrogena??o, filmes finos, revestimentos cer?micos, dentre outros. No presente trabalho, pigmentos contendo CuFe2O4, CuCr2O4,e CuFeCrO4 foram sintetizados por uma nova rota qu?mica usando gelatina como precursor org?nico visando sua aplica??o para pigmentos cer?micos. Os pigmentos foram caracterizados por difra??o de raios X (DRX), espectroscopia na regi?o do Infravermelho, Microscopia eletr?nica de varredura (MEV) espectroscopia na regi?o do UV-Vis?vel e Colorimetria. Os resultados confirmaram a viabilidade da rota de s?ntese utilizada; Com rela??o aos p?s-sintetizados, observase a forma??o da fase espin?lio a partir de 500oC, com um aumento da cristalinidade, bem como a forma??o de outras fases. Os pigmentos se mostraram cristalinos e as fases desejadas foram obtidas. As cromitas de cobre possuem tonalidades que v?o do verde ao preto, de acordo com a temperatura de calcina??o, enquanto que as cromitas de cobre dopadas com ferro obtiveram colora??o marrom. As ferritas de cobre apresentaram cores bem mais escuras, do marrom ao preto, o que ? uma caracter?stica interessante devido ? grande import?ncia dos pigmentos pretos na ind?stria cer?mica
2

S?ntese de pigmentos cer?micos inorg?nicos nanom?tricos pela rota dos precursores polim?ricos / Nano-Ceramic Inorganic Pigments Synthesis for Route Polymeric Precursors

Silva, Everl?nia Maria da 08 February 2011 (has links)
Made available in DSpace on 2014-12-17T14:58:06Z (GMT). No. of bitstreams: 1 EverlaniaMS_DISSERT.pdf: 3651916 bytes, checksum: 47bd28b5197e92c8cda3dddf63274b6d (MD5) Previous issue date: 2011-02-08 / Considering the constant evolution of technology in growth and the need for production techniques in the ceramics area to move forward together, we sought in this study, the research and development of polymeric precursor method to obtain inorganic ceramic pigments. Method that provides quality to obtain the precursor powders of oxides and pigments at the same time, offers time and cost advantages, such as reproducibility, purity and low temperature heat treatment, control of stoichiometry. This work used chromium nitrate and iron nitrate as precursors. The synthesis is based on the dissolution of citric acid as a complexing agent, addition of metal oxides, such as ion chromophores; polymerization with ethylene glycol and doping with titanium oxide. Passing through precalcination, breakdown, thermal treatments at different temperatures of calcination (700 to 1100 oC), resulting in pigments: green for chromium oxide deposited on TiO2 (CrTiO3) and orange for iron oxide deposited on TiO2 ( FeTiO3). Noticing an increase of opacity with increasing temperature. Were performed thermal analysis (TG and ATD) in order to evaluate its thermodecomposition. The powders were also characterized by techniques such as XRD, revealing the formation of crystalline phases such as iron titanate (FeTiO3) and chrome titanate (CrTiO3), SEM, demonstrating formation of rounded particles for both oxides and Spectroscopy in the UV-Visible Region, verifying the potential variation and chromaticity os pigments. Thus, the synthesized oxides were within the requirements to be applied as pigments and shown to be possible to propose its use in ceramic materials / Considerando a evolu??o tecnol?gica em constante crescimento e a necessidade de t?cnicas de produ??o na ?rea de cer?mica que avancem em conjunto, buscou-se neste estudo, a pesquisa e desenvolvimento do m?todo dos precursores polim?ricos para obten??o de pigmentos cer?micos inorg?nicos. M?todo que proporciona qualidade a obten??o dos p?s precursores dos ?xidos pigmentantes e ao mesmo tempo, oferece vantagens de tempo e custo, como: reprodutibilidade, pureza, baixas temperaturas de tratamento t?rmico e controle de estequiometria. Neste trabalho foram utilizados nitrato de cromo e nitrato de ferro, como precursores. A s?ntese foi baseada na dissolu??o do ?cido c?trico, como agente complexante; adi??o dos ?xidos met?licos, como ?ons crom?foros; polimeriza??o com etileno glicol e dopagem com ?xido de tit?nio. Passando por pr?-calcina??o, desagrega??o, tratamentos t?rmicos em diferentes temperaturas de calcina??o (700 a 1100 oC), resultando em pigmentos: verde para o ?oxido de cromo depositado sobre TiO2 (CrTiO3) e laranja para o ? Oxido de Ferro depositado sobre TiO2 (FeTiO3). Percebendo-se aumento de sua opacidade com o aumento da temperatura. Foram feitas an?lises t?rmicas (TG e ATD), a fim de avaliar sua termo de composi??o. Os p?s foram caracterizados tamb?m por t?cnicas como DRX, revelando-se a forma??o de fases cristalinas como Titanato de Ferro (FeTiO3) e Titanato de Cromo (CrTiO3); MEV, evidenciando-se forma??o de aglomerados de part?culas ligeiramente hexagonais para ambos os ?oxidos e Espectroscopia na Regi?o do UV-Vis?vel, verificando a varia??o e o potencial de cromaticidade dos pigmentos. Desta forma, os ?xidos sintetizados apresentaram-se dentro dos requisitos necess?rios para serem aplicados como pigmentos e mostra-se poss?vel propor sua utiliza??o em materiais cer?micos

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