544 resultados para Nanopartículas
Resumo:
In this paper, we describe the preparation of alginate nanoparticles as a delivery system for the herbicide clomazone. Two different methods were investigated and characterized by size distribution, zeta potencial, pH and in vitro release. The alginate/AOT nanoparticles had higher rates of association of the herbicide clomazone than alginate/chitosan nanoparticles. Clomazone release profile, showed a significant difference in release behavior of pure herbicide in solution when compared with herbicide loaded in both alginate nanoparticles. This study is important to construct a biodegradable release system using herbicide for later release into more specific targets, avoiding contamination of environmental matrices.
Resumo:
En la presente investigación, se evaluó el efecto de adicionar nanopartículas de sílice a dos matrices cementes buscando establecer su influencia en las propiedades finales de dichos materiales. Para llevar a cabo esta evaluación, se adicionaron las nanopartículas en dosificaciones desde 0.30% - 5.0% en peso, con la finalidad de determinar la dosificación a la cual se obtienen los mejores resultados. Una de las conclusiones obtenidas de la presente investigación señala que al utilizar este tipo de materiales, el mayor reto a superar, es la correcta dispersión de las nanopartículas en las matrices cementantes, ya que de no asegurar dicha dispersión y debido a la alta energía superficial que poseen las nanopartículas, se presenta una tendencia natural a aglomerarse conformando así materiales de tamaños muy superiores a los que presentan en su estado original, perdiendo así la ventaja de su uso. Para prevenir este efecto y como resultado de la primera etapa de esta investigación, se propuso un método de mezclado en el cual se utilizó como dispersante un aditivo superplastificante (en adelante llamado SP) de base policarboxilato de calcio en dosificaciones de 0.5% en peso que se adicionó a ambas matrices cementantes. Los resultados obtenidos sugieren que algunas propiedades tales como la resistencia mecánica a la compresión, la resistencia a la flexión y sobre todo, la resistencia al ataque químico por sulfatos, se ven mejoradas mediante la adición de nanopartículas de sílice. Dicha mejoría se observó tanto en la matriz de cemento Portland como en la matriz de cemento sulfoaluminoso. Los resultados finales de la investigación mostraron que la resistencia mecánica a la compresión para un cemento Portland ordinario se mejoró hasta en un 40% a edad de 24 h cuando se adicionaron las nanopartículas en porcentaje de 0.50% en peso, sin embargo, los resultados al resto de las edades no presentaron mejoría. Para la matriz de cemento sulfoaluminoso (en adelante CSA), los mejores resultados se obtuvieron también con la dosificación de 0.50% en peso con relación al cemento, sin embargo, la mejoría no fue de la misma magnitud a la obtenida con la matriz de cemento Portland. Por otro lado, la resistencia al ataque químico por sulfatos presentó una mejoría de hasta un 80% para la matriz de cemento sulfoaluminoso cuando se adicionaron las nanopartículas de sílice. Este resultado sugiere que la matriz con nanopartículas presenta una mayor densificación propiciando por ende, un menor grado de porosidad.
Resumo:
Natural nanoclays are of great interest particularly for the production of polymer-based nanocomposites. In this work, kaolinite clays from two natural deposits in the State of the Rio Grande do Norte and Paraiba were purified with thermal treatment and chemical treatments, and characterized. Front to the gotten data, had been proposals methodologies for elimination or reduction of coarse particle texts, oxide of iron and organic substance. These methodologies had consisted of the combination of operations with thermal treatments, carried through in electric oven, and acid chemical attacks with and hydrogen peroxide. The Analyzers Thermogravimetric was used to examine the thermal stability of the nanoclays. The analysis indicated weight losses at temperatures under 110 ºC and over the temperature range of 350 to 550 ºC. Based on the thermal analysis data, the samples were submitted to a thermal treatment at 500 °C, for 8 h, to remove organic components. The X-ray diffraction patterns indicated that thermal treatment under 500 °C affect the basic structure of kaolinite. The BET surface area measurements ranged from 32 to 38 m2/g for clay samples with thermal treatment and from 36 to 53 m2/g for chemically treated samples. Thus, although the thermal treatment increased the surface area, through the removal of organic components, the effect was not significant and chemical treatment is more efficient, not affect the basic structure of kaolinite, to improve particle dispersion. SEM analysis confirms that the clay is agglomerated forming micron-size particles
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Dissertação (mestrado)—Universidade de Brasília, Instituto de Química, Programa de Pós-Graduação em Química, 2016.
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La celulosa como un biopolímero sustentable y renovable, ha sido ampliamente estudiada para la generación de materiales que cuenten con características físicas y químicas versátiles. Los procesos para la extracción de celulosa se han modificado para lograr la conformación de celulosa nano y microfibrilada estos procesos son estudiados para conseguir mayores rendimientos y operaciones sustentables. En el presente proyecto para la formación de nanopartículas de celulosa se utiliza un proceso de irradiación de microondas, partiendo de una extracción primaria de la celulosa de dos residuos agroindustriales y un residuo de la industria del papel, mediante un pre-tratamiento posteriormente aplicar el proceso de hidrólisis asistida por microondas para la producción de las nanopartículas.
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In this study barium hexaferrite was (general formulae BaFe12O19) was synthesized by the Pechini method under different conditions of heat treatment. Precursors like barium carbonate and iron nitrate were used. These magnetic ceramic, with magnetoplumbite type structure, are widely used as permanent magnet because of its excellent magnetic properties, such as: high Curie temperature, good magnetic anisotropy, high coercivity and corrosion resistance. The samples were characterized by thermal analysis (DTA and TG), X- ray Diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), Scanning Electron Microscopy (SEM) end Vibrating sample Magnetometer (VSM). The results confirm the expected phase, which was reinforced according to our analysis. A single phase powder at relatively high temperatures with particle sizes around 100 nm was obtained. The characteristic magnetic behavior one of the phases has been noted (probably superparamagnetic material), while another phase was identified as a ferrimagnetic material. The ferrimagnetic phase showed vortex configuration with two central and slightly inclined plateaus. In general, increase of heat treatment temperature and time, directly influenced the technological properties of the samples
Resumo:
Composite resins have been subjected to structural modifications aiming at improved optical and mechanical properties. The present study consisted in an in vitro evaluation of the staining behavior of two nanohybrid resins (NH1 and NH2), a nanoparticulated resin (NP) and a microhybrid resin (MH). Samples of these materials were prepared and immersed in commonly ingested drinks, i.e., coffee, red wine and acai berry for periods of time varying from 1 to 60 days. Cylindrical samples of each resin were shaped using a metallic die and polymerized during 30 s both on the bottom and top of its disk. All samples were polished and immersed in the staining solutions. After 24 hours, three samples of each resin immersed in each solution were removed and placed in a spectrofotome ter for analysis. To that end, the samples were previously diluted in HCl at 50%. Tukey tests were carried out in the statistical analysis of the results. The results revealed that there was a clear difference in the staining behavior of each material. The nanoparticulated resin did not show better color stability compared to the microhybrid resin. Moreover, all resins stained with time. The degree of staining decreased in the sequence nanoparticulated, microhybrid, nanohybrid MH2 and MH1. Wine was the most aggressive drink followed by coffee and acai berry. SEM and image analysis revealed significant porosity on the surface of MH resin and relatively large pores on a NP sample. The NH2 resin was characterized by homogeneous dispersion of particles and limited porosity. Finally, the NH1 resin depicted the lowest porosity level. The results revealed that staining is likely related to the concentration of inorganic pa rticles and surface porosity
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Dissertação (mestrado)—Universidade de Brasília, Instituto de Química, Programa de Pós-Graduação em Tecnologias Química e Biológica, 2016.
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Microalloyed steels constitute a specific class of steel with low amount of carbon and microalloying elements such as Vanadium (V), Niobium (Nb) and Titanium (Ti). The development and application of microalloyed steels and steels in general are limited to the handling of powders with particles of submicron or nanometer dimensions. Therefore, this work presents an alternative in order to construction of microalloyed steels utilizing the deposition by magnetron sputtering technique as a microalloying element addiction in which Ti nanoparticles are dispersed in an iron matrix. The advantage of that technique in relation to the conventional metallurgical processes is the possibility of uniformly disperse the microalloying elements in the iron matrix. It was carried out deposition of Ti onto Fe powder in high CH4, H2, Ar plasma atmosphere, with two deposition times. After the deposition, the iron powder with nanoparticles of Ti dispersed distributed, were compacted and sintered at 1120 ° C in resistive furnace. Characterization techniques utilized in the samples of powder before and after deposition of Ti were Granulometry, Scanning Electron Microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX) and X-ray diffraction (DRX). In the case of sintered samples, it was carried out characterization by SEM and Vickers Microhardness assays. The results show which the deposition technique by magnetron sputtering is practicable in the dispersion of particles in iron matrix. The EDX microanalysis detected higher percentages of Ti when the deposition were carried out with the inert gas and when the deposition process was carried out with reactive gas. The presence of titanium in iron matrix was also evidenced by the results of X-ray diffraction peaks that showed shifts in the network matrix. Given these results it can be said that the technique of magnetron sputtering deposition is feasible in the dispersion of nanoparticles of iron matrix in Ti.
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Dissertação (mestrado)—Universidade de Brasília, Instituto de Ciências Biológicas, Programa de Pós-Graduação Nanociência e Nanobiotecnologia, 2016.
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La elaboración de nanopartículas de diferentes tipos ha capturado el interés de científicos, ya que éstas presentan distintas propiedades físicas, químicas y mecánicas que las de tamaño macroscópico.