842 resultados para Accidents de la route


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The crystallization of 28 binary and ternary cocrystals of quercetin with dibasic coformers is analyzed in terms of a combinatorial selection from a solution of preferred molecular conformations and supramolecular synthons. The crystal structures are characterized by distinctive O-H center dot center dot center dot N and O-H center dot center dot center dot O based synthons and are classified as nonporous, porous and helical. Variability in molecular conformation and synthon structure led to an increase in the energetic and structural space around the crystallization event. This space is the crystal structure landscape of the compound and is explored by fine-tuning the experimental conditions of crystallization. In the landscape context, we develop a strategy for the isolation of ternary cocrystals with the use of auxiliary template molecules to reduce the molecular and supramolecular `confusion' that is inherent in a molecule like quercetin. The absence of concomitant polymorphism in this study highlights the selectivity in conformation and synthon choice from the virtual combinatorial library in solution.

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MgO:Fe3+ (0.1-5 mol%) nanoparticles (NPs) were synthesized via eco-friendly, inexpensive and simple low temperature solution combustion route using Aloe vera gel as fuel. The final products were characterized by SEM, TEM and HRTEM. PXRD data and Rietveld analysis revealed the formation of cubic system. The influence of Fe3+ ion concentration on the structure morphology, UV absorption, PL emission and photocatalytic activity of MgO:Fe3+ NPs were investigated. The yellow emission with CIE chromaticity coordinates (0.44, 0.52) and average correlated color temperature value was found to be 3540 K which corresponds to warm light of NPs. The control of Fe3+. on MgO matrix influences the photocatalytic decolorization of methylene blue (MB) under UV light. The enhanced photocatalytic activity of MgO:Fe3+ (4 mol%) was attributed to dopant concentration, effective crystallite size, textural properties, decreased band gap and capability for reducing the electron hole pair recombination. Further, the trends of inhibitory effect in the presence of different radical scavengers were explored. These findings open up new avenues for the exploration of Fe-doped MgO in eco-friendly water applications and in the process of display devices. (C) 2015 Elsevier B.V. All rights reserved.

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The electronic structure of the (La0.8Sr0.2)(0.98)Mn1-xCrxO3 model series (x = 0, 0.05, or 0.1) was measured using soft X-ray synchrotron radiation at room and elevated temperature. O K-edge near-edge X-ray absorption fine structure (NEXAFS) spectra showed that low-level chromium substitution of (La, Sr)MnO3 resulted in lowered hybridisation between O 2p orbitals and M 3d and M 4sp valance orbitals. Mn L-3-edge resonant photoemission spectroscopy measurements indicated lowered Mn 3d-O 2p hybridisation with chromium substitution. Deconvolution of O K-edge NEXAFS spectra took into account the effects of exchange and crystal field splitting and included a novel approach whereby the pre-peak region was described using the nominally filled t(2g) up arrow state. 10% chromium substitution resulted in a 0.17 eV lowering in the energy of the t(2g) up arrow state, which appears to provide an explanation for the 0.15 eV rise in activation energy for the oxygen reduction reaction, while decreased overlap between hybrid O 2p-Mn 3d states was in qualitative agreement with lowered electronic conductivity. An orbital-level understanding of the thermodynamically predicted solid oxide fuel cell cathode poisoning mechanism involving low-level chromium substitution on the B-site of (La, Sr)MnO3 is presented. (C) 2015 AIP Publishing LLC.

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Eu3+-activated layered LnOCl (Ln=La and Gd) phosphors were synthesized by the conventional solid-state method at relatively low temperature (700 degrees C) and shorter duration of 2 h. The structural parameters were refined by the Rietveld refinement analysis and confirmed by the high resolution transmission electron microscopy (HRTEM). Both the compounds were crystallized in the tetragonal structure with space group P4/nmm (No. 129). The homogeneity of the elements were analyzed by TEM mapping and found to be uniformly distributed. The photoluminescence spectra revealed that the intensity of D-5(0)-> F-7(2) transition (619 nm) was more intense in Eu3+-activated GdOCl compared to LaOCl. This was due to the property of Gd3+ ions to act as an intermediate sublattice to facilitate the energy transfer to Eu3+ ions. Intensity parameters and radiative properties such as transition probabilities, radiative lifetime and branching ratio were calculated using the Judd-Ofelt theory. The CIE color coordinates result revealed that the Eu3+-activated GdOCl (0.641, 0.354) phosphor was close to the commercial red phosphors like, Y2O3:Eu3+ (0.645, 0.347), (Y2OS)-S-2:Eu3+ (0.647, 0.343) and National Television System Committee (NTSC) (0.67, 0.33). The results suggest that the present GdOCl:Eu3+ compound acts as a potential candidate for red phosphor materials.

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We investigate the direct correspondence between Co band ferromagnetism and structural parameters in the pnictide oxides RCoPO for different rare-earth ions (R = La, Pr, Nd, Sm) by means of muon-spin spectroscopy and ab initio calculations, complementing our results published previously G. Prando et al., Common effect of chemical and external pressures on the magnetic properties of RCoPO (R = La, Pr), Phys. Rev. B 87, 064401 (2013)]. We find that both the transition temperature to the ferromagnetic phase T-C and the volume of the crystallographic unit cell V are conveniently tuned by the R ionic radius and/or external pressure. We report a linear correlation between T-C and V and our ab initio calculations unambiguously demonstrate a full equivalence of chemical and external pressures. As such, we show that R ions influence the ferromagnetic phase only via the induced structural shrinkage without involving any active role from the electronic f degrees of freedom, which are only giving a sizable magnetic contribution at much lower temperatures.

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HuR is a ubiquitous, RNA binding protein that influences the stability and translation of several cellular mRNAs. Here, we report a novel role for HuR, as a regulator of proteins assembling at the 3' untranslated region (UTR) of viral RNA in the context of hepatitis C virus (HCV) infection. HuR relocalizes from the nucleus to the cytoplasm upon HCV infection, interacts with the viral polymerase (NS5B), and gets redistributed into compartments of viral RNA synthesis. Depletion in HuR levels leads to a significant reduction in viral RNA synthesis. We further demonstrate that the interaction of HuR with the 3' UTR of the viral RNA affects the interaction of two host proteins, La and polypyrimidine tract binding protein (PTB), at this site. HuR interacts with La and facilitates La binding to the 3' UTR, enhancing La-mediated circularization of the HCV genome and thus viral replication. In addition, it competes with PTB for association with the 3' UTR, which might stimulate viral replication. Results suggest that HuR influences the formation of a cellular/viral ribonucleoprotein complex, which is important for efficient initiation of viral RNA replication. Our study unravels a novel strategy of regulation of HCV replication through an interplay of host and viral proteins, orchestrated by HuR. IMPORTANCE Hepatitis C virus (HCV) is highly dependent on various host factors for efficient replication of the viral RNA. Here, we have shown how a host factor (HuR) migrates from the nucleus to the cytoplasm and gets recruited in the protein complex assembling at the 3' untranslated region (UTR) of HCV RNA. At the 3' UTR, it facilitates circularization of the viral genome through interaction with another host factor, La, which is critical for replication. Also, it competes with the host protein PTB, which is a negative regulator of viral replication. Results demonstrate a unique strategy of regulation of HCV replication by a host protein through alteration of its subcellular localization and interacting partners. The study has advanced our knowledge of the molecular mechanism of HCV replication and unraveled the complex interplay between the host factors and viral RNA that could be targeted for therapeutic interventions.

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Nanocrystalline Mn0.4Zn0.6SmxGdyFe2-(x+y)O4 (x = y = 0.01, 0.02, 0.03, 0.04 and 0.05) were synthesized by combustion route. The detailed structural studies were carried out through X-ray diffractometer (XRD), Fourier transform infrared spectroscopy (FTIR), transmission electron microscopy (TEM). The results confirms the formation of mixed spine phase with cubic structure due to the distortion created with co-dopants substitution at Fe site in Mn-Zn ferrite lattice. Further, the crystallite size increases with an increase of Sm3+-Gd3+ ions concentration while lattice parameter and lattice strain decreases. Furthermore, the effect of Sm-Gd co-doping in Mn-Zn ferrite on the room temperature electrical (dielectric studies) studies were carried out in the wide frequency range 1 GHz-5 GHz. The magnetic studies were carried out using vibrating sample magnetometer (VSM) under applied magnetic field of 1.5T and also room temperature electron paramagnetic resonance (EPR) spectra's were recorded. From the results of dielectric studies, it shows that the real and imaginary part of permittivities are increasing with variation of Gd3+ and Sm3+ concentration. The magnetic studies reveal the decrease of remnant, saturation magnetization and coercivity with increasing of Sm3+-Gd3+ ion concentration. The g-value, peak-to-peak line width and spin concentration evaluated from EPR spectra correlated with cations occupancy. The electromagnetic properties clearly indicate that these materials are the good candidates which are useful at L and C band frequency. (C) 2015 Elsevier B.V. All rights reserved.

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The effect of the La3+ and Gd3+ co-doping on the structure, electric and magnetic properties of BiFeO3 (BFO) ceramics are investigated. For the compositions (x=0 and 0 <= y <= 0.15) in the perovskite structured LaxGdyBi1-xFeO3 system, a tiny residual phase of Bi2Fe4O9 is noticed. Such a secondary phase is suppressed with the incorporation of `La' content (x). The magnitude of dielectric constant (epsilon(r) increases progressively by increasing the `La' content from x=0 to 0.15 with a remarkable decrease of dielectric loss. For x=0.15, the system LaxGdyBi1-x(x+y)FeO3 exhibits highest remanent magnetization (M-r) of 0.18 emu/g and coercive magnetic field (H-c) of similar to 1 Tin the presence of external magnetic field of 9 T at 300 K. The origin of enhanced dielectric and magnetic properties of LaxGdyBil (x+y)Fe03 and the role of doping elements, La3+, Gd3+ has been discussed. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.

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The present work deals with the structural and efficient down-shifting (DS) and up-conversion (UC) luminescence properties of erbium ion (Er3+) doped nanocrystalline barium sodium niobate (Ba2Na1-3xErxNb5O15, where x = 0, 0.02, 0.04 and 0.06) powders synthesized via novel citrate-based sol-gel route. The monophasic nature of the title compound was confirmed via x-ray powder diffraction followed by FT-IR studies. High-resolution transmission electron microscopy (HRTEM) facilitated the establishment of the nanocrystalline phase and the morphology of the crystallites. The Kubelka-Munk function, based on diffused reflectance studies and carried out on nano-sized crystallites, was employed to obtain the optical band-gap. The synthesized nanophosphor showed efficient DS/PL-photoluminescence and UC luminescence properties, which have not yet been reported so far in this material. The material emits intense DS green emission on excitation with 378 nm radiation. Interestingly, the material gives intense UC emission in the visible region dominated by green emission and relatively weak red emission on 976 nm excitation (NIR laser excitation). Such a dual-mode emitting nanophosphor could be very useful in display devices and for many other applications.

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La presente investigación fue realizada en la micro cuenca el Coyote ubicada en el municipio de Condega Departamento de Estelí, como parte del convenio de la Universidad Nacional Agraria con el proyecto CARE/MARENA/P IMCHAS, con el fin de mejorar las condiciones ambientales de la micro cuenca. La intención de la investigación fue evaluar la composición florística del bosque ripario de la parte alta, media y baja de la micro cuenca donde se desarrolló en tres etapas: re conocimiento del área, realización del inventario forestal y diagnóstico de la vegetación arbórea. La metodología que se utilizó en dicho estudio fue la aplicación de un inventario forestal con un área muestreada de 0.24 ha (inventario sis temá tico con par celas de 0.01 ha cada una, con un a intensidad de muestreo 0.08 %. La composición florística existente en el bosque la conforman un total de 66 individuos mayores a los 10cm de DAP equivalentes a 31 especies arbóreas, y 18 familias botánicas, sobresaliendo la Fabaceae (5), Mimosaceae (5) y Anacardiaceae (3 especies). En las clases diamétricas la mayoría de los individuos se encuentran en la categoría diamétrica de 10 - 19.9 (clases 1) siendo la parte alta el sitio que más árboles posee con (66.66 arb ha - 1 ) y la parte media con 20.83 arb ha - 1 la parte alta con el m enor número de árboles 8.33 arb ha - 1 en la categoría de 20 - 39.9 (clase 2 y 3), donde el mayor número de individuos se encuentran en la parte baja de la microcuenca con 66.66 arb ha - 1 y la parte me dia con 20.83 arb ha - 1 , la parte alta con el men or número de árboles 8.33 arb ha - 1 . Las categorías silviculturales el mayor porcentaje de árboles presentan fuste recto sin daño evidente (categoría 1), distribuidos de la siguiente manera 13.64 % en la parte alta, 10.61 % en la parte media y 16.67 % en la parte baja. En la categoría de iluminación vertical plena el may or porcentaje de árboles se encuentra en la (categoría 2), distribuidos para la parte alta y la parte media el 4.55% y la parte baja con el 13.64% . Encontramos en la parte baja el 18.18% de árboles sin lianas (categorí a 1), observándose para la parte media el 10.61% y la parte alta el 15.15%, en esta misma categoría. En cuanto a la vigorosidad de los árboles en el bosque ripario la parte baja de la microcuenca tiene el mayor porcentaje con 17.67%, con buen follaje y buena vitalidad aparente, sin daño que afecte su crecimiento (categoría 1), seguida de la parte alta con 13.64% y la parte media con 12.12%. La regeneración natural e n (área muestr eada 0.024 ), consiguiente fue de 541.7 plantas ha - 1 , representada por 10 familias botánicas (Euphorbiaceae, Sterculiaceae, Anacardiaceae, Rutaceae, Mimosaceae, Fagaceae, Myrtaceae, Arecaceae, Verbenaceae y Bignonaceae).

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La presente investigación tuvo como objetivo comparar la producción de calidad de carbón vegetal entre la fosa de tierra y el horno de ladrillo utilizando Eucalyptus camaldulensis, empleando dos categorías diamétricas. La metodología utilizada consistió en la selección del material vegetal para la producción de carbón, se seleccionaron árboles con diámetros entre 20-30 cm. y mayores de 30 cm. por cada categoría diamétrica se emplearon cinco árboles para un total de diez individuos, se tumbaron los árboles con la técnica de tala dirigida, con hacha a partir de 0.30 cm. del suelo con el propósito de aprovechar la mayor cantidad de madera del árbol, se procedió a medir la longitud de la troza en metros empleando una cinta métrica para la medición del diámetro medio. Luego se procedió a calcular el volumen del fuste limpio utilizando la fórmula de Smalian, posteriormente se traslado trozas y ramas al sitio de carbonización, se depositaron por clase diamétrica donde se cálculo el volumen empleando la fórmula de Huber, para la cubicación de las ramas se empleo el método tradicional de metro estéreo. Para la producción de carbón vegetal se emplearon dos diseños de producción: fosa de tierra y el horno de ladrillos, el análisis de laboratorio consistió en determinar porcentaje de cenizas, carbono orgánico, densidad aparente y porcentaje de humedad. Para la clase diamétrica de 20 a 30 cm., se utilizo un volumen de 4.48 m3 y para la categoría diamétrica mayor de 30 cm, 6.55 m3. Finalizado el proceso de carbonización se obtuvieron 8 sacos en la fosa de tierra, equivalente a 0.217m3, en el horno de ladrillo se obtuvieron 18 sacos lo que representa 0.496 m3. Comparando los estándares de calidad de la FAO, con los obtenidos en este estudio, son aceptables, se concluye que el método de producción de horno de ladrillos usando arboles mayores de 30 cm es el mejor método para la producción de carbón vegetal.

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El objetivo fue evaluar el establecimiento de tres especies forestales de valor comercial, Swietenia humilis, Cedrela odorata y Pachira quinata, como medida de enriquecimiento del bosque seco secundario de Nandaime, como medida de enriquecimiento del bosque seco. Se establecieron tres parcelas cuadradas con área de 625 m² (25 m x 25 m) y un espaciamiento de 3 m x 3 m entre plantas y líneas. Se plantaron 15 plantas por especie para un total de 45 individuos por parcelas, cada parcela con un porcentaje de cobertura de dosel correspondiente a: 0 a 20%, 20 a 50% y 50% a más. Las variables medidas fueron sobrevivencia, daños por insectos. Se obtuvo un porcentaje general de sobrevivencia de 53%, C. odorata es la especie que presentó valores más bajos (0%) en la cobertura0 a 20% y mayor de 50, los principales daños causados fueron notorios en los meses secos al final del período evaluado, principalmente en la cobertura mayor a 50%. Con los resultados obtenidos de las tres especies evaluadas se concluye que las especies P. quinata y Swietenia humilis, pueden utilizarse en plantaciones de enriquecimiento forestal con cobertura inferior al a 50% mientras C. odorata siempre y cuando se establezca un sistema de monitoreo y control de agentes de agentes que incrementan el riesgo de mortalidad de la especie.

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En la finca El Plantel ubicada en el kilómetro 31 ½ carretera Tipitapa-Masaya, en el Municipio de Nindirí departamento de Masaya Nicaragua, se realizó un estudio del establecimiento inicial de Hymeneae courbaril con el fin de conocer su comportamiento en diámetro, altura y sobrevivencia a pleno sol. La plantación se estableció en parcelas con dimensiones de 15mx15m con un distanciamiento entre plantas de 3m x 3m. El número de plantas por parcela fue de 36 para un total de 108 individuos. Se realizaron dos mediciones (Octubre del 2009 y Octubre del 2010) de las variables diámetro, altura y sobrevivencia; y un único monitoreo (en Octubre del 2010) de los daños en la plantación. Los resultados de sobrevivencia obtenidos en la plantación correspondió a un 61,6%. En la evaluación del incremento corriente anual en altura y diámetro alcanzados por la especie se muestra un comportamiento positivo con incremento corriente anual en diámetro de 4.79mm; valores de incremento corriente anual en altura de 4.80cm. Los daños registrados en la plantación corresponden principalmente a la defoliación por hormigas del genero Atta, registrándose una frecuencia del 58% de plantas afectadas.