940 resultados para light extraction efficiency


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Neste trabalho foi desenvolvido e validado um método analítico para a determinação de Fe total em amostras de água com diferentes salinidades empregando a microextração líquido-líquido dispersiva (DLLME), seguido de determinação espectrofotométrica na região do ultravioleta-visível. Nas extrações por DLLME, o Fe foi complexado com pirrolidina ditiocarbamato de amônio (APDC) e extraído após a injeção de uma mistura composta de 1,2-diclorobenzeno (solvente extrator) e etanol (solvente dispersor). Os fatores que influenciam a eficiência de extração (tipo e volume de solvente extrator e dispersor, concentração de APDC e tempo de extração) e subsequente determinação espectrofotométrica foram otimizados. Após otimização das condições, a curva de calibração foi linear entre 0,02 e 2,0 mg L-1 (r 2 = 0,9998) e os limites de detecção e quantificação do método foram de 6,1 e 18,3 µg L-1 , respectivamente. O fator de pré-concentração foi de 3,3. A exatidão foi avaliada em termos de recuperação, com variação entre 90 e 102% e desvio padrão relativo (RSD) inferiores a 12%. A exatidão do método também foi avaliada utilizando um material de referência certificado (SRM 1643e, Elementos Traço em Água), o qual apresentou concordância de 104% e RSD de 5%. O método foi aplicado para amostras de água com diferentes salinidades, como água mineral, estuarina e de alto mar. Além disso, o método proposto apresentou concordância da ordem de 95%, quando comparado com o método 1,10-fenantrolina para a determinação de Fe total.

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O Rio Grande Sul destaca-se no cenário nacional como grande produtor de diversas culturas, as quais demandam grande quantidade de agrotóxicos das mais diversas classes químicas e toxicidades. No entanto a intensa utilização destes compostos torna-se uma preocupação devido a possíveis contaminações das águas superficiais e subterrâneas. Em virtude da degradação dos mananciais a água mineral passou a ser uma das fontes mais utilizadas para o consumo humano, pois tem-se a percepção de que a mesma possui melhor qualidade que a água tratada, além disso acredita-se que a mesma esta isenta de substâncias orgânicas prejudiciais à saúde humana. Neste trabalho, foi realizada a determinação dos agrotóxicos atrazina, simazina, imazapique, imazetapir, imidacloprido, ciproconazol, tebuconazol e epoxiconazol em água mineral empregando a Microextração Líquido-Líquido Dispersiva (DLLME), Microextração Líquido-Líquido Dispersiva com Solidificação da Gota Orgânica Flutuante (DLLME-SFO) e Cromatografia Líquida acoplada à Espectrometria de Massas em série com fonte de ionização por Eletronebulização (LC-ESI-MS/MS). Para o método empregando DLLME e LC-ESI-MS/MS foram otimizados alguns fatores como o tipo e volume de solvente extrator e dispersor e pH. Após a otimização dos parâmetros de extração, fragmentação dos compostos e separação cromatográfica, o método foi validado avaliando-se curva analítica, linearidade, limites de detecção e quantificação, precisão (repetitividade e precisão intermediária) e exatidão (recuperação). Todas as curvas analíticas apresentaram valores de r maiores que 0,999. Os Limites de Quantificação (LOQs) para o método estiveram na faixa de 5 a 500 ng L-1. Foram obtidas recuperações entre 102 - 120% para a repetibilidade e entre 92 e 110% para a precisão intermediária, com RSD de 2 a 10% para todos os compostos. Para o método empregando DLLME-SFO e LC-ESI-MS/MS foram avaliados alguns parâmetros que afetam a eficiência da extração como, tipo e volume de solvente extrator e dispersor, força iônica e pH. Nas condições ótimas de extração todas as curvas analíticas apresentaram valores de r maiores que 0,997. Os LOQs para o método variaram entre 12,5 - 125 ng L-1. As recuperações foram entre 70 e 118% para a repetitividade e entre 76 e 95% para a precisão intermediária, com RSD de 2 a 18% para todos os compostos. Com relação ao Efeito Matriz (EM) avaliado para todos os compostos pelos dois métodos, foi observado baixo EM. Isso indicou que não é necessário utilizar a curva analítica preparada no extrato branco da matriz para a quantificação destes analitos. Ambos os métodos foram aplicados para a determinação de resíduos de agrotóxicos em amostras de água mineral provenientes de diferentes regiões do estado do Rio Grande do Sul e não foram encontrados resíduos de agrotóxicos nas amostras analisadas. Os métodos validados apresentaram como principais vantagens baixo consumo de solventes orgânicos e amostra, rapidez, altos fatores de concentração e recuperações dentro da faixa aceitável. Os limites de quantificação dos métodos ficaram abaixo dos limites máximos de resíduos permitidos pela legislação brasileira para agrotóxicos em água mineral.

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A rapid and efficient Dispersive Liquid–Liquid Microextraction (DLLME) followed by Laser-Induced Breakdown Spectroscopy detection (LIBS) was evaluated for simultaneous determination of Cr, Cu, Mn, Ni and Zn in water samples. Metals in the samples were extracted with tetrachloromethane as pyrrolidinedithiocarbamate (APDC) complexes, using vortex agitation to achieve dispersion of the extractant solvent. Several DLLME experimental factors affecting extraction efficiency were optimized with a multivariate approach. Under optimum DLLME conditions, DLLME-LIBS method was found to be of about 4.0–5.5 times more sensitive than LIBS, achieving limits of detection of about 3.7–5.6 times lower. To assess accuracy of the proposed DLLME-LIBS procedure, a certified reference material of estuarine water was analyzed.

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Changes in the molecular structure of polymer antioxidants such as hindered amine light stabilisers (HALS) is central to their efficacy in retarding polymer degradation and therefore requires careful monitoring during their in-service lifetime. The HALS, bis-(1-octyloxy-2,2,6,6-tetramethyl-4-piperidinyl) sebacate (TIN123) and bis-(1,2,2,6,6-pentamethyl-4-piperidinyl) sebacate (TIN292), were formulated in different polymer systems and then exposed to various curing and ageing treatments to simulate in-service use. Samples of these coatings were then analysed directly using liquid extraction surface analysis (LESA) coupled with a triple quadrupole mass spectrometer. Analysis of TIN123 formulated in a cross-linked polyester revealed that the polymer matrix protected TIN123 from undergoing extensive thermal degradation that would normally occur at 292 degrees C, specifically, changes at the 1- and 4-positions of the piperidine groups. The effect of thermal versus photo-oxidative degradation was also compared for TIN292 formulated in polyacrylate films by monitoring the in situ conversion of N-CH3 substituted piperidines to N-H. The analysis confirmed that UV light was required for the conversion of N-CH3 moieties to N-H - a major pathway in the antioxidant protection of polymers - whereas this conversion was not observed with thermal degradation. The use of tandem mass spectrometric techniques, including precursor-ion scanning, is shown to be highly sensitive and specific for detecting molecular-level changes in HALS compounds and, when coupled with LESA, able to monitor these changes in situ with speed and reproducibility. (C) 2013 Elsevier B. V. All rights reserved.

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An innovative design strategy for light emitting field effect transistors (LEFETs) to harvest higher luminance and switching is presented. The strategy uses a non-planar electrode geometry in tri-layer LEFETs for simultaneous enhancement of the key parameters of quantum efficiency, brightness, switching, and mobility across the RGB color gamut.

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Maize (Zea mays L.) is a chill-susceptible crop cultivated in northern latitude environments. The detrimental effects of cold on growth and photosynthetic activity have long been established. However, a general overview of how important these processes are with respect to the reduction of productivity reported in the field is still lacking. In this study, a model-assisted approach was used to dissect variations in productivity under suboptimal temperatures and quantify the relative contributions of light interception (PARc) and radiation use efficiency (RUE) from emergence to flowering. A combination of architectural and light transfer models was used to calculate light interception in three field experiments with two cold-tolerant lines and at two sowing dates. Model assessment confirmed that the approach was suitable to infer light interception. Biomass production was strongly affected by early sowings. RUE was identified as the main cause of biomass reduction during cold events. Furthermore, PARc explained most of the variability observed at flowering, its relative contributions being more or less important according to the climate experienced. Cold temperatures resulted in lower PARc, mainly because final leaf length and width were significantly reduced for all leaves emerging after the first cold occurrence. These results confirm that virtual plants can be useful as fine phenotyping tools. A scheme of action of cold on leaf expansion, light interception and radiation use efficiency is discussed with a view towards helping breeders define relevant selection criteria. This paper originates from a presentation at the 5th International Workshop on Functional–Structural Plant Models, Napier, New Zealand, November 2007.

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A series of deoxycholic and cholic acid-derived oligomers were synthesized and their ability to extract hydrophilic dye molecules of different structure, size, and functional groups into nonpolar media was studied. The structure of the dye and dendritic effect in the extraction process was examined using absorption spectroscopy and dynamic light scattering (DLS). The efficiency of structurally preorganized oligomers in the aggregation process was evaluated by 1-anilinonaphthalene-8-sulfonic acid (ANS) fluorescence studies. The possible formation of globular structures for higher-generation molecules was investigated by molecular modeling studies and the results were correlated with the anomaly observed in the extraction process with this molecule. The ability of these molecules for selective extraction of specific dyes from blended colors is also reported.

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In the present study dye sensitized solar cells (DSSCs) have been fabricated with a tri-layer photo anode consisting of hydrothermally prepared titania nano tubes (TNT) having a diameter of 9-10 nm and length of several micrometers as outer layer, P25 TiO2 powder as transparent light absorbing middle layer and a compact TiO2 inner layer to improve the adhesion of different layers on a transparent conducting oxide coated substrate. In comparison to cells fabricated using TNTs or P25 alone, the tri-layer DSSCs exhibit an enhanced efficiency of 7.15% with a current density of 17.12 mA cm(-2) under AM 1.5 illumination. The enhancement is attributed to the light scattering generated by TNTs aggregates, reduction in electron transport resistance at the TiO2/dye/electrolyte interface and an improvement in electron life-time. (c) 2012 Elsevier B.V. All rights reserved.

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Tunability of electron recombination time and light to electricity conversion efficiency to superior values in semiconductor sensitized solar cells via optimized design of nanocrystal light sensitizer shape is discussed here.

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In work of this nature it is advisable to state definitely the problem attempted in order that the reader may have a clear understanding of the object of the work undertaken. The problem involved is to determine the efficiency and inefficiency in the operation of the Bureau of Power and Light of Los Angeles, California, as it exists at the present time. This will be more on the order of a government investigation than a purely engineering thesis. An engineering thesis consists or reports based on experiments and tests, etc., while the present undertaking will consist of investigation of the facts concerning the organization, operation and conduct of the business of the Bureau of Power and Light. The facts presented were obtained from several sources: (1) the writer's knowledge of the business; (2) books written on municipal ownership; (3) reports published by the Bureau, and (4) personal interviews with men connected with the organization. I have endeavored to draw conclusions from the facts thus obtained, as to the present status of the Bureau of Power and Light.

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Organic light-emitting diodes (OLEDs) using tris-(8-hydroxy-quinolinato) aluminum (Alq(3)) as an emitter, 8-hydroxy-quinolinato lithium (Liq) as an electron injection layer, were prepared. Experimental results show that the efficiency of device with Liq is three times higher than that without Liq. The device using Liq as an injection layer is less sensitive in efficiency to the Liq thickness than that using LiF. In addition to the Alq3 based devices, Liq is also very effective as an electron injection layer for 4,4'-bis(2,2-diphenylvinyl)-1,1'-biphenyl based blue OLED and poly (2-methoxy,5-(2-ethyl-hexyloxy)-1,4-phenylenevinylene) based orange polymer OLED. (c) 2004 Elsevier B.V. All rights reserved.

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The self-organization of the helical structure of chiral nematic liquid crystals combined with their sensitivity to electric fields makes them particularly interesting for low-threshold, wavelength tunable laser devices. We have studied these organic lasers in detail, ranging from the influence specific macroscopic properties, such as birefringence and order parameter, have on the output characteristics, to practical systems in the form of two-dimensional arrays, double-pass geometries and paintable lasers. Furthermore, even though chiral nematics are responsive to electric fields there is no facile means by which the helix periodicity can be adjusted, thereby allowing laser wavelength tuning, without adversely affecting the optical quality of the resonator. Therefore, in addition to studying the liquid crystal lasers, we have focused on finding a novel method with which to alter the periodicity of a chiral nematic using electric fields without inducing defects and degrading the optical quality factor of the resonator. This paper presents an overview of our research, describing (i) the correlation between laser output and material properties,(ii) the importance of the gain medium,(iii) multicolor laser arrays, and (iv) high slope efficiency (>60%) silicon back-plane devices. Overall we conclude that these materials have great potential for use in versatile organic laser systems.

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The electroluminescence efficiency at room temperature and low temperature (15 K) in a wide-narrow-well InGaN/GaN light-emitting diode with a narrow last well (1.5 nm) and a narrow next-to-last barrier (5 nm) is investigated to study the efficiency droop phenomenon. A reduced droop in the wide wells and a reduced droop at low temperatures reveals that inferior hole transportation ability induced Auger recombination is the root for the droop at high excitation levels.

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Tunnel-regenerated multiple-active-region (TRMAR) light-emitting diodes (LEDs) with high quantum efficiency and high brightness have been proposed and fabricated. We have proved experimentally that the efficiency of the electrical luminescence and the on-axis luminous intensity of such TRMAR LEDs scaled linearly approximately with the number of the active regions. The on-axis luminous intensity of such TRMAR LEDs with only 3 mum GaP current spreading layer have exceeded 5 cd at 20 mA dc operation under 15 degrees package. The high-quantum-efficiency and high-brightness LEDs under the low injection level were realized. (C) 2001 American Institute of Physics.