816 resultados para Nanopartículas magnéticas de glicidila


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En este documento se analiza funcionamiento de los balastros como fuente de alimentación de lámpara de gases, así como sus diferentes topologías, magnéticas y electrónicas, y la necesidad de usar circuitos de corrección de factor de potencia y disminución de distorsón por armónicos, THD. También se analizó el comportamiento de un balastro ante diferentes etapas de corrección de factor de potencia usando simuladores computacionales como el PSPICE con bases de diseño en un prototipo.

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Dissertação de Mestrado, Ciências Biomédicas, Departamento de Ciências Biomédicas e Medicina, Universidade do Algarve, 2014

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Tese de Doutoramento, Ciências Agrárias, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2015

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Tese de Doutoramento em Ciências Veterinárias, Especialidade de Ciências Biológicas e Biomédicas

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En la presente tesis, partiendo de un análisis cualitativo de mapas de anomalías gravimétricas y magnéticas de La Zona del Silencio, localizada al Centro-Norte de México, en la frontera entre los estados de Chihuahua, Coahuila y Durango, en el margen oeste del bloque de Coahuila, con el propósito de encontrar una relación entre los datos geofísicos obtenidos y las estructuras geológicas que se encuentran a lo largo del área de estudio se propuso un modelo que explica el origen de los rasgos geológicos-geofísicos superficiales y profundos. Dicho análisis se realizó a partir del procesamiento e interpretación de los mapas de anomalías tanto gravimétricas como magnéticas. Con los datos gravimétricos obtenidos del International Gravimetric Bureau se generaron mapas de anomalías de Aire Libre y de Bouguer Completa. Con el procesamiento de los datos se elaboraron mapas de las componentes Regional, Residual y Primeras Derivadas. Los datos aeromagnéticos fueron obtenidos del Servicio Geológico Mexicano, con los cuales se generaron mapas de Reducción al Polo y Residual. Complementando con un Modelo Digital de Elevaciones (DME), combinado con la revisión de los estudios geológicos previos se hicieron correlaciones con estructuras superficiales y bloques de basamento profundos de la zona. Dentro del área de investigación se observó una clara diferencia estructural entre basamento cristalino y relleno sedimentario. La dirección del campo gravimétrico es generalmente NNW-SSE y refleja la estructura del basamento. En los mapas de anomalías gravimétricas residuales se observó una tendencia regional con una orientación preferencial NNW-SSE, la cual se asocia con la provincia extensional de Cuencas y Sierras. Las anomalías magnéticas presentan una orientación principal WNW-ESE, las cuales se relacionan con la fábrica de basamento definida con el fallamiento profundo de edad Pérmico-Triásico-Jurásico de orientación WNW-ESE.

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La nanociencia y nanotecnología han revolucionado las investigaciones en ciencia de los materiales, permitiendo el desarrollo de nuevos productos con desempeño superior a los convencionales. Conceptos nanotecnológicos como la adición de partículas en tamaños nanométricos para incrementar las propiedades finales han sido demostrados en cerámicos, sin embargo esta alternativa prácticamente no ha sido investigada en sistemas porcelánicos, específicamente en porcelanas triaxiales con aplicaciones eléctricas. Este trabajo de investigación presenta el desarrollo de una formulación de porcelana triaxial silicosa, de grado eléctrico, con características mecánicas y dieléctricas mejoradas mediante la incorporación de nanopartículas cerámicas. Se estudió la influencia de la adición de dos tipos de óxidos cerámicos en tamaño nanométrico, α- alúmina (α-Al2O3) y circonia (ZrO2), en las propiedades y microestructura de la porcelana triaxial, al variar la concentración de las nanopartículas en la composición inicial. En la primera parte de la experimentación, se elaboraron probetas experimentales siguiendo un proceso a nivel laboratorio haciendo uso de un conformado por presión uniaxial. Posteriormente, se elaboraron pastas porcelánicas a nivel planta-prototipo mediante un proceso de conformado por extrusión plástica. Las probetas sinterizadas fueron caracterizadas mediante evaluaciones físicas tales como densidad, porosidad, absorción de humedad y contracción lineal; así mismo se llevaron a cabo análisis microestructurales y de fases a través de las técnicas de DR-X, MEB y DSC-TGA. Por último, se realizaron evaluaciones mecánicas por medio de ensayos de resistencia a la compresión y módulo de ruptura (por tres puntos), así como la evaluación de la capacidad aislante con pruebas de resistencia dieléctrica. Los resultados obtenidos demuestran que la inserción de nanopartículas de alúmina y circonia, ayudan en el reforzamiento mecánico del sistema porcelánico triaxial estudiado, además de mejorar sus características dieléctricas, lo que representa una alternativa tecnológicamente factible para mejorar el desempeño de productos de porcelana, como es el caso de aisladores eléctricos

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Dissertação (mestrado)–Universidade de Brasília, Universidade UnB de Planaltina, Programa de Pós-Graduação em Ciência de Materiais, 2015.

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Introducción. A pesar de los esfuerzos tanto de la medicina como de la industria farmacéutica, el incremento en la prevalencia de resistencia en bacterias patógenas frente a antibióticos se ha vuelto uno de los mayores problemas en la medicina moderna. El área odontológica tampoco se encuentra exenta, siendo común el uso excesivo de antibióticos lo que contribuye al desarrollo de resistencia antimicrobiana. La primera etapa para el desarrollo de la enfermedad periodontal es la formación de un biofilm de bacterias periodontopatógenas, siendo el Aggregaribacter actinomycetemcomitans (A.a) uno de los más asociados a dicha enfermedad. El tratamiento de esta patología se basa en remover mecánicamente la placa dentobacteriana y, en segunda instancia, en el apoyo de terapia antimicrobiana para coadyuvar la eliminación de las bacterias periodontopatógenas, cuales tienen gran similitud con Mycobacterium tuberculosis. La rifampicina es uno de los antibióticos efectivos contra bacterias multi-resistentes y la primera elección en el tratamiento de tuberculosis activa. Con el fin de mejorar la terapia farmacológica y evadir la resistencia del agente infectivo, se han propuesto nuevas estrategias basadas en sistemas de liberación controlada. Entre los más estudiados en los últimos 10 años se encuentran las nanopartículas poliméricas. El objetivo del presente estudio fue evaluar la actividad antimicrobiana de la rifampicina nanoencapsulada contra el A.a presente en la periodontitis. Materiales y Métodos. Para el estudio, Se tomaron muestras de fluido crevicular en pacientes con bolsas periodontales de 5-10 mm de profundidad. Se inoculo caldo de tripticaseina de soya (TCS) con las muestras tomadas y se incubaron a 37 ° C en condiciones aeróbicas por 7 días. La presencia de Aggregatibacter actinomycetemcomitans (A.a) fue determinado mediante PCR en tiempo real. La Concentración Mínima Inhibitoria (MIC) de rifampicina para interferir con el crecimiento de bacterias orales fue determinada mediante la técnica de dilución de tubos. Posteriormente se prepararon mediante la técnica de nanoprecipitación NP de Eudragit® EPO, L100-55 y PLA entre 100 y 200 nm y su IP con distribución de tamaño homogéneo. Resultados. A.a fue detectado en muestras de fluido crevicular en pacientes con periodontitis, corroborando su asociación con dicha patología. La efectividad de la rifampicina libre contra bacterias orales fue confirmada, obteniéndose una CMI de 1 µg/ml. Las NP con Rifampicina se ajustaron a la misma CMI que la Rif libre. Las NP de Eudragit® EPO cargadas con Rif mostraron que la liberación de la Rif de la NP fue inmediata, mientras que el Eudragit® L100-55 y PLA con Rif no mostró inhibición durante los 5 días de incubación. Esto hace suponer que el fármaco no fue liberado o solo se liberó en una baja proporción que no permitió llegar a la CMI. Conclusión. La rifampicina es una excelente alternativa terapéutica para el tratamiento de la enfermedad periodontal, promoviendo resultados favorables en la evaluación clínica de pacientes. Sería interesante continuar con estudios utilizando otro polímero o mezcla de ellos para favorecer la liberación del fármaco en la NP.

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Studies indicate that a variation in the degree of crystallinity of the components of a polymer blend influences the mechanical properties. This variation can be obtained by subjecting the blend to heat treatments that lead to changes in the spherulitic structure. The aim of this work is to analyze the influence of different heat treatments on the variation of the degree of crystallinity and to establish a relationship between this variation and the mechanical behavior of poly(methyl methacrylate)/poly(ethylene terephthalate) recycled (PMMA / PETrec) with and without the use of compatibilizer agent poly(methyl methacrylate-al-glycidyl methacrylate-al-ethyl acrylate) (MMAGMA- EA). All compositions were subjected to two heat treatments. T1 heat treatment the samples were treated at 130 ° C for 30 minutes and cooled in air. In T2, the samples were treated at 230 ° C for 5 minutes and cooled to approximately -10 ° C. The variation of the degree of crystallinity was determined by the proportional relationship between crystallinity and density, with the density measured by pycnometry. The mechanical behavior was verified by tensile tests with and without the presence of notches and pre-cracks, and by method of fracture toughness in plane strain (KIC). We used the scanning electron microscopy (SEM) to analyze the fracture surface of the samples. The compositions subjected to heat treatment T1, in general, showed an increase in the degree of crystallinity in tensile strength and a tendency to decrease in toughness, while compositions undergoing treatment T2 showed that the opposite behavior. Therefore, this work showed that heat treatment can give a polymer blend further diversity of its properties, this being caused by changes in the crystal structure

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Magnetic ceramics have been widely investigated, especially with respect to intrinsic and extrinsic characteristics of these materials. Among the magnetic ceramic materials of technological interest, there are the ferrites. On the other hand, the thermal treatment of ceramic materials by microwave energy has offered various advantages such as: optimization of production processes, high heat control, low consumption of time and energy among others. In this work were synthesized powders of Ni-Zn ferrite with compositions Ni1- xZnxFe2O4 (0.25 ≤ x ≤ 0.75 mols) by the polymeric precursor route in two heat treatment conditions, conventional oven and microwave energy at 500, 650, 800 and 950°C and its structural, and morphological imaging. The materials were characterized by thermal analysis (TG/ DSC), X-ray diffraction (XRD), absorption spectroscopy in the infrared (FTIR), scanning electron microscopy (SEM), X-ray spectroscopy and energy dispersive (EDS) and vibrating sample magnetometry (VSM). The results of X-ray diffraction confirmed the formation of ferrite with spinel-type cubic structure. The extrinsic characteristics of the powders obtained by microwave calcination and influence significantly the magnetic behavior of ferrites, showing particles ferrimagnéticas characterized as soft magnetic materials (soft), is of great technological interest. The results obtained led the potential application of microwave energy for calcining powders of Ni-Zn ferrite

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In recent decades have seen a sharp growth in the study area of nanoscience and nanotechnology and is included in this area, the study of nanocomposites with self-cleaning properties. Since titanium dioxide (TiO2) has high photocatalytic activity and also antimicrobial, self-cleaning surfaces in your application has been explored. In this study a comparison was made between two synthesis routes to obtain TiO2 nanoparticles by hydrothermal method assisted by microwave. And after analysis of XRD and SEM was considered the best material for use in nanocomposites. It was deposited nanocomposite film of poly (dimethyl siloxane) (PDMS) with 0.5, 1, 1.5 and 2% by weight of nanoparticles of titanium dioxide (TiO2) by the spraying method. The nanocomposite was diluted with hexane and the suspension was deposited onto glass substrate, followed by curing in an oven with forced air circulation. The photocatalytic activity of the nanocomposite impregnated with methylene blue was evaluated by UV- vis spectroscopy from the intensity variation of absorption main peak at 660nm with time of exposure to the UV chamber. Changes in the contact angle and microhardness were analyzed before and after UV aging test. The effect of ultraviolet radiation on the chemical structure of the PDMS matrix was evaluated by spectrophotometry Fourier transform infrared (FTIR).The results indicated that the addition of TiO2 nanoparticles in the coating PDMS gave high photocatalytic activity in the decomposition of methylene blue, an important characteristic for the development of self-cleaning coatings

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The refractory metal carbides have proven important in the development of engineering materials due to their properties such as high hardness, high melting point, high thermal conductivity and high chemical stability. The niobium carbide presents these characteristics. The compounds of niobium impregnated with copper also have excellent dielectric and magnetic properties, and furthermore, the Cu doping increases the catalytic activity in the oxidation processes of hydrogen. This study aimed to the synthesis of nanostructured materials CuNbC and niobium and copper oxide from precursor tris(oxalate) oxiniobate ammonium hydrate through gas-solid and solid-solid reaction, respectively. Both reactions were carried out at low temperature (1000°C) and short reaction time (2 hours). The niobium carbide was produced with 5 % and 11% of copper, and the niobium oxide with 5% of copper. The materials were characterized by X-Ray Diffraction (XRD), Rietveld refinement, Scanning Electron Microscopy (SEM), X-Ray Fluorescence Spectroscopy (XRF), infrared spectroscopy (IR), thermogravimetric (TG) and differential thermal analysis (DTA , BET and particle size Laser. From the XRD analysis and Rietveld refinement of CuNbC with S = 1.23, we observed the formation of niobium carbide and metallic copper with cubic structure. For the synthesis of mixed oxide made of niobium and copper, the formation of two distinct phases was observed: CuNb2O6 and Nb2O5, although the latter was present in small amounts

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For the chemical method of synthesis of co-precipitation were produced ferrite powders manganese-cobalt equal stoichiometric formula Mn (1-x) Co (x) Fe2O4, for 0 < x < 1, first reagent element using as the hydroxide ammonium and second time using sodium hydroxide. The obtained powders were calcined at 400 ° C, 650 ° C, 900 ° C and 1150 ° C in a conventional oven type furnace with an air atmosphere for a period of 240 minutes. Other samples were calcined at a temperature of 900 ° C in a controlled atmosphere of argon, to evaluate the possible influence of the atmosphere on the final results the structure and morphology. The samples were also calcined in a microwave oven at 400 ° C and 650 ° C for a period of 45 minutes possible to evaluate the performance of this type of heat treatment furnace. It was successfully tested the ability of this group include isomorphic ferrite with the inclusion of nickel cations in order to evaluate the occurrence of disorder in the crystalline structures and their changes in magnetic characteristics.To identify the structural, morphological, chemical composition and proportions, as well as their magnetic characteristics were performed characterization tests of X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), energy dispersive spectroscopy (EDX), thermogravimetric (TG), vibrating sample magnetometry (MAV) and Mössbauer spectroscopy. These tests revealed the occurrence of distortion in the crystal lattice, changes in magnetic response, occurrence of nanosized particles and superparamagnetism

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Recent studies are investigating a new class of inorganic materials which arise as a promising option for high performance applications in the field of photoluminescence. Highlight for rare earth (TR +3 ) doped, which have a high luminous efficiency, long decay time and being able to emit radiation in the visible range, specific to each element. In this study, we synthesized ZrO2: Tb +3 , Eu +3 , Tm +3 nanoparticles complex polymerization method (CPM). We investigated the influences caused by the heat treatment temperature and the content of dopants in zirconia photoluminescent behavior. The particles were calcined at temperature of 400, 500 and 600 ° C for two hours and ranged in concentration of dopants 1, 2, 4 and 8 mol% TR +3 . The samples were characterized by thermal analysis, X-ray diffraction, photoluminescence of measurements and uv-visible of spectroscopies. The results of X-ray diffraction confirmed the formation of the tetragonal and cubic phases in accordance with the content of dopants. The photoluminescence spectra show emission in the region corresponding simultaneous to blue (450 nm), green (550 nm) and red (615 nm). According to the results, ZrO2 particles co-doped with rare earth ions is a promising material white emission with a potential application in the field of photoluminescence

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The development of new materials to fill the demand of technological advances is a challenge for many researchers around the world. Strategies such as making blends and composites are promising alternatives to produce materials with different properties from those found in conventional polymers. The objective of this study is to evaluate the effect of adding the copolymer poly(ethylene methyl acrylate) (EMA) and cotton linter fibers (LB) on the properties of recycled poly(ethylene terephthalate) (PETrec) by the development of PETrec/EMA blend and PETrec/EMA/LB blend composite. In order to improve the properties of these materials were added as compatibilizers: Ethylene - methyl acrylate - glycidyl methacrylate terpolymer (EMA-GMA) and maleic anhydride grafted polyethylene (PE-g-MA). The samples were produced using a single screw extruder and then injection molded. The obtained materials were characterized by thermogravimetry (TG), melt flow index (MFI) mensurements, torque rheometry, pycnometry to determinate the density, tensile testing and scanning electron microscopy (SEM). The rheological results showed that the addition of the EMA copolymer increased the viscosity of the blend and LB reduces the viscosity of the blend composite. SEM analysis of the binary blend showed poor interfacial adhesion between the PETrec matrix and the EMA dispersed phase, as well as the blend composite of PETrec/EMA/LB also observed low adhesion with the LB fiber. The tensile tests showed that the increase of EMA percentage decreased the tensile strength and the Young s modulus, also lower EMA percentage samples had increased the elongation at break. The blend composite showed an increase in the tensile strength and in the Young`s modulus, and a decrease in the elongation at break. The blend formulations with lower EMA percentages showed better mechanical properties that agree with the particle size analysis which showed that these formulations presented a smaller diameter of the dispersed phase. The blend composite mechanical tests showed that this material is stronger and stiffer than the blend PETrec/EMA, whose properties have been reduced due to the presence of EMA rubbery phase. The use of EMA-GMA was effective in reducing the particle size of the EMA dispersed phase in the PETrec/EMA blend and PE-g-MA showed evidences of reaction with LB and physical mixture with the EMA