919 resultados para CU 2 ION


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In this work, we study the effect of doping depth profile on the photocatalytic and surface properties of TiO(2) films. Two thin film layers of TiO(2) (200 nm) and Co (5 nm), respectively, were deposited by physical evaporation on glass substrate. These films were annealed for 1 s at 100 and 400 A degrees C and the Co layer was removed by chemical etching. Atomic force microscopy (AFM) phase images showed changes in the surface in function of thermal treatment. The grazing-incidence X-ray fluorescence (GIXRF) measurements indicated that the thermal treatment caused migration of Co atoms to below the surface, the depths found were between 19 and 29 nm. The contact angle showed distinct values in function of the doped profile or Co surface concentration. The UV-vis spectra presented a red shift with the increasing of thermal treatment. Photocatalytical assays were performed by methylene blue discoloration and the higher activity was found for TiO(2)-Co treated at 400 A degrees C, the ESI-MS showed the fragments formed during the methylene blue decomposition.

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CD and EPR were used to characterize interactions of oxindole-Schiff base copper(II) complexes with human serum albumin (HSA). These imine ligands form very stable complexes with copper, and can efficiently compete for this metal ion towards the specific N-terminal binding site of the protein, consisting of the amino acid sequence Asp-Ala-His. Relative stability constants for the corresponding complexes were estimated from CD data, using the protein as competitive ligand, with values of log K(CuL) in the range 15.7-18.1, very close to that of [Cu(HSA)] itself, with log K(CuHSA) 16.2. Some of the complexes are also able to interfere in the a-helix structure of the protein, while others seem not to affect it. EPR spectra corroborate those results, indicating at least two different metal species in solution, depending on the imine ligand. Oxidative damage to the protein after incubation with these copper(II) complexes, particularly in the presence of hydrogen peroxide, was monitored by carbonyl groups formation, and was observed to be more severe when conformational features of the protein were modified. Complementary EPR spin-trapping data indicated significant formation of hydroxyl and carbon centered radicals, consistent with an oxidative mechanism. Theoretical calculations at density functional theory (DFT) level were employed to evaluate Cu(II)-L binding energies, L -> Cu(II) donation, and Cu(II) -> L back-donation, by considering the Schiff bases and the N-terminal site of HSA as ligands. These results complement previous studies on cytotoxicity, nuclease and pro-apoptotic properties of this kind of copper(II) complexes, providing additional information about their possibilities of transport and disposition in blood plasma. (C) 2009 Elsevier Inc. All rights reserved.

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The influence of molecular oxygen in the interactions of emeraldine base form of polyaniline (EB-PANI) with Fe(III) or Cu(II) ions in 1-methyl-2-pyrrolidinone (NMP) solutions has been investigated by UV-vis-NIR, resonance Raman and electron paramagnetic resonance (EPR) spectroscopies. Through the set of spectroscopic results it was possible to rationalize the role Of O(2) and to construct a scheme of preferential routes occurring in the interaction of EB-PANI with Fe(III) or Cu(II). Solutions of 4.0 mmol L(-1) EB-PANI with 0.8, 2.0 and 20 mmol L(-1) Fe(III) or Cu(II) ions in NMP were investigated and the main observed reactions were EB-PANI oxidation to pernigraniline (PB-PANI) and EB-PANI doping process by pseudo-protonation, or by a two-step redox process. In the presence Of O(2), PB-PANI is observed in all Fe(III)/EB solutions and EB-PANI doping only occurs in solutions with high Fe(III) concentrations through pseudo-protonation. On the other hand, emeraldine salt (ES-PANI) is formed in all Fe(III)/EB solutions under N(2) atmosphere and, in this case, doping occurs both by the pseudo-protonation and two-step redox mechanisms. In all Cu(II)/EB solutions PB-PANI is formed both in the presence and absence of O(2), and only for solutions with high Cu(II) concentrations doping process occurs in a very low degree. The most important result from EPR spectra was providing evidence for redox steps. The determined Cu(II) signal areas under oxygen are higher than under N(2) and, further. the initial metal proportions (1:2:20) are maintained in these spectra, indicating that Cu(I) formed are re-oxidized by O(2) and. so, Cu(II) ions are being recycled. Consistently, for the solutions prepared under nitrogen, the corresponding areas and proportions in the spectra are much lower, confirming that a partial reduction of Cu(II) ions actually occurs. (C) 2009 Elsevier B.V. All rights reserved.

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In this work, we studied the photocatalytic and the structural aspects of silicon wafers doped with Au and Cu submitted to thermal treatment. The materials were obtained by deposition of metals on Si using the sputtering method followed by fast heating method. The photocatalyst materials were characterized by synchrotron-grazing incidence X-ray fluorescence, ultraviolet-visible spectroscopy, X-ray diffraction, and assays of H(2)O(2) degradation. The doping process decreases the optical band gap of materials and the doping with Au causes structural changes. The best photocatalytic activity was found for thermally treated material doped with Au. Theoretical calculations at density functional theory level are in agreement with the experimental data.

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CuO/CeO(2), CuO/Al(2)O(3) and CuO/CeO(2)-Al(2)O(3) catalysts, with CuO loading varying from 1 to 5 wt.%, were prepared by the citrate method and applied to the preferential oxidation of carbon monoxide in a reaction medium containing large amounts of hydrogen (PROX-CO). The compounds were characterized ex situ by X-ray diffraction, specific surface area measurements, temperature-programmed reduction and temperature-programmed reduction of oxidized surfaces; XANES-PROX in situ experiments were also carried out to study the copper oxidation state under PROX-CO conditions. These analyses showed that in the reaction medium the Cu(0) is present as dispersed particles. On the ceria, these metallic particles are smaller and more finely dispersed, resulting in a stronger metal-support interaction than in CuO/Al(2)O(3) or CuO/CeO(2)-Al(2)O(3) catalysts, providing higher PROX-CO activity and better selectivity in the conversion of CO to CO(2) despite the greater BET area presented by samples supported on alumina. It is also shown that the lower CuO content, the higher metal dispersion and consequently the catalytic activity. The redox properties of the ceria support also contributed to catalytic performance. (C) 2010 Elsevier B.V. All rights reserved.

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This paper describes an investigation on CuO and CuO-ZnO catalysts supported on CeO(2) and CeO(2)-La(2)O(3) oxides, which were designed for the low temperature water-gas shift reaction (WGSR). Bulk catalysts were prepared by co-precipitation of metal nitrates and characterized by energy-dispersive spectroscopy (EDS), X-ray diffraction (XRD), surface area (by the BET method), X-ray photoelectron spectroscopy (XPS), and in situ X-ray absorption near edge structure (XANES). The catalysts` activities were tested in the forward WGSR, and the CuO/CeO(2) catalyst presented the best catalytic performance. The reasons for this are twofold: (1) the presence of Zn inhibits the interaction between Cu and Ce ions, and (2) lanthanum oxide forms a solid solution with cerium oxide, which will cause a decrease in the surface area of the catalysts. Also the CuO/CeO(2) catalyst presented the highest Cu content on the surface, which could influence its catalytic behavior. Additionally, the Cu and Cu(1+) species could influence the catalytic activity via a reduction-oxidation mechanism, corroborating to the best catalytic performance of the Cu/Ce catalyst. (c) 2010 Elsevier B.V. All rights reserved.

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MgO based refractory castables draw wide technological interest because they have the versatility and installation advantages of monolithic refractories with intrinsic MgO properties, such as high refractoriness and resistance to basic slag corrosion. Nevertheless, MgO easily reacts with water to produce Mg(OH)(2), which is followed by a large volumetric expansion, limiting its application in refractory castables. In order to develop solutions to minimize this effect, a better understanding of the main variables involved in this reaction is required. In this work, the influence of temperature, as well as the impact of the chemical equilibrium shifting (known as the common-ion effect), on MgO hydration was evaluated. Ionic conductivity measurements at different temperatures showed that the MgO hydration reaction is accelerated with increasing temperature. Additionally, different compounds were added to evaluate their influence on the reaction rate. Among them, CaCl(2) delayed the reaction, whereas KOH showed an opposite behavior. MgCl(2) and MgSO(4) presented similar results and two other distinct effects, reaction delay and acceleration, which depended on their concentration in the suspensions. The results were evaluated by considering the kinetics and the thermodynamics of the reaction, and the mechanical damages in the samples that was caused by the hydration reaction. (C) 2009 Elsevier Ltd and Techna Group S.r.l. All rights reserved.

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The kinetics and the thermodynamics of electrochemical intercalation of lithium into CeO(2)-TiO(2) films prepared by the sol-gel process were studied by galvanostatic intermittent titration technique (GITT) as function of the depth of lithium intercalation. The open-circuit-potential versus x in Li(x)(CeO(2)-TiO(2)) curve consists of two straight lines with different slopes, one in the range of 0.03 <= x <= 0.09 and the other of 0.09 < x <= 0.15. The standard Gibbs energy for lithium intercalation Delta G(1)(0) was 6kJ/mol for x = 0.09 in Li(x)(CeO(2)-TiO(2)) at room temperature. The chemical diffusion coefficient value, D(Li+), of lithium intercalation into thin film oxide was 2.14.10(-11) cm(2)/s at x = 0.15, and the value of the component diffusion coefficient D(Li+),(k) was about one order of magnitude lower than the coefficient of chemical diffusion.

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The development and application of a functionalized carbon nanotubes paste electrode (CNPE) modified with crosslinked chitosan for determination of Cu(II) in industrial wastewater, natural water and human urine samples by linear scan anodic stripping voltammetry (LSASV) are described. Different electrodes were constructed using chitosan and chitosan crosslinked with glutaraldehyde (CTS-GA) and epichlorohydrin (CTS-ECH). The best voltammetric response for Cu(II) was obtained with a paste composition of 65% (m/m) of functionalized carbon nanotubes, 15% (m/m) of CTS-ECH, and 20% (m/m) of mineral oil using a solution of 0.05 mol L(-1) KNO(3) with pH adjusted to 2.25 with HNO(3), an accumulation potential of 0.3V vs. Ag/AgCl (3.0 mol L(-1) KCl) for 300 s and a scan rate of 100 mV s(-1). Under these optimal experimental conditions, the voltammetric response was linearly dependent on the Cu(II) concentration in the range from 7.90 x 10(-8) to 1.60 x 10(-5) mol L(-1) with a detection limit of 1.00 x 10(-8) mol L(-1). The samples analyses were evaluated using the proposed sensor and a good recovery of Cu(II) was obtained with results in the range from 98.0% to 104%. The analysis of industrial wastewater, natural water and human urine samples obtained using the proposed CNPE modified with CTS-ECH electrode and those obtained using a comparative method are in agreement at the 95% confidence level. (C) 2009 Elsevier B. V. All rights reserved.

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Cu(II) ions previously coordinated with typical electroplating organic additives were investigated as an alternative source of metal for plating bath. The coordination complexes were isolated from reaction between CuSO(4) and organic additives as ligands (oxalate ion, ethylenediamine or imidazole). Deposits over 1010 steel were successfully obtained from electroplated baths using the complexes without any addition of free additives, at pH = 4.5 (H(2)SO(4)/Na(2)SO(4)). These deposits showed better morphologies than deposits obtained from CuSO(4) solution either in the absence or presence of oxalate ion as additive (40 mmol L(-1)), at pH = 4.5 (H(2)SO(4)/Na(2)SO(4))It is suggestive that the starting metal plating coordinated with additives influences the electrode position processes, providing deposits with corrosion potentials shifted over + 200 mV in 0.5 mol L(-1) NaCl (1 mV s(-1)). The resistance against corrosion is sensitive to the type of additive-complex used as precursor. The complex with ethylenediamine presented the best deposit results with the lowest pitting potential (-0.27 V vs 3.0 mol L(-1) CE). It was concluded that the addition of free additives to the electrodeposition baths is not necessary when working with previously coordinated additives. Thus, the complexes generated in ex-situ are good alternatives as plating precursors for electrodeposition bath. (C) 2009 Elsevier B.V. All rights reserved.

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Bakgrund: Diabetes typ 2 är en endokrin sjukdom och ett globalt hälsoproblem, där antalet insjuknande personer ökar kraftigt. Behandlingen vid diabetes typ 2 utgörs till största del av egenvård vilket ställer stora krav på patienten och på sjukvården. En bristande följsamhet till råd om egenvård kan leda till sämre hälsa för patienten och ökade kostnader för samhället. Syfte: Syftet med denna litteraturöversikt var att beskriva vilka faktorer som påverkar följsamheten till råd om egenvård hos patienter med diabetes typ 2. Metod: En litteraturöversikt baserad på 15 vetenskapliga artiklar där både kvalitativa och kvantitativa artiklar har granskats. Databaserna CINAHL och PubMed har använts. Resultat: Faktorer som påverkade följsamheten till råd om egenvård identifierades och resulterade i fem huvudkategorier: Information; Kunskap; Socialt stöd; Teknologiskt stöd och Livssituation. Dessa faktorer framkom som viktiga för en god följsamhet till råd om egenvård. Slutsats: Det är av stor betydelse att försöka identifiera varje individs olika förutsättningar, för att på så sätt ha möjlighet att anpassa både information, utbildning och egenvårdsplanering utifrån individen.

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Entre maio de 2001 e janeiro de 2002, foram realizadas coletas sazonais na lagoa Azul, Siderópolis, SC. Esta lagoa formou-se por lavra de mineração de carvão a céu aberto desativada. Foram avaliadas as concentrações de Cr, Mn, Ni, Zn e Fe na água e no sedimento. Estes metais, exceto o Fe, foram também analisados no músculo e no fígado das espécies dos peixes Oreochromis niloticus (tilápia) e Geophagus brasiliensis (acará). O objetivo foi avaliar a qualidade da lagoa, bem como, das espécies de peixes predominantes, devido a preocupação quanto ao consumo potencial das mesmas pela população do entorno. As análises do sedimento, quando comparada a locais não contaminados, indicam concentração elevada para Fe, Mn, Cr e Zn. No compartimento água as concentrações de Fe, Mn e Ni estão acima do estabelecido para a classe 2 da Resolução CONAMA 20/86. Conforme análise estatística, em ambos os compartimentos abióticos ocorrem diferenças significativas entre os 4 pontos amostrados, porém diferença sazonal ocorre somente para o compartimento água. O conteúdo de metais em peixes não apresenta diferença significativa entre as espécies analisadas, todavia entre os diferentes tecidos analisados, o fígado apresentou a maior concentração em ambas as espécies. Através das análises do músculo (parte comestível), foi possível avaliar o risco à saúde humana. Segundo a estimativa da ingestão diária, os peixes analisados não propiciam risco aparente de contaminação à população do entorno, conforme os critérios adotados para o teor dos metais avaliados.

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Este trabalho revisa a geologia e apresenta dados inéditos do Depósito de Cobre Cerro dos Martins (DCM), incluindo geocronologia Pb-Pb em zircão, inclusões fluidas, isótopos estáveis (C, O e S), composição isotópica do Sr e geoquímica de elementos maiores e traços das rochas vulcânicas encaixantes. O depósito está hospedado na seqüência vulcano-sedimentar do Grupo Bom Jardim, da Bacia do Camaquã, do Neoproterozóico do Escudo Sul Rio-grandense, e possui reservas calculadas de 1.450.000 t, com teor médio de 0,83% Cu. O depósito consiste de um conjunto de veios sulfetados que preenchem fraturas de direção N40º-60ºW em rochas andesíticas e sedimentares clásticas, com disseminações confinadas em níveis de siltito, arenito, andesito e conglomerado, da Formação Hilário do Grupo Bom Jardim. Os minerais do minério filoneano são a calcosina e bornita com calcopirita, pirita, galena e esfalerita subordinadas. Digenita, covelita, malaquita cuprita e azurita ocorrem como minério secundário em ganga constituída de carbonatos, quartzo, minerais argilosos, barita e rara hematita. A composição química das vulcânicas (elementos maiores e traços, incluindo ETR) indicam uma afinidade alcalina para o vulcanismo relacionado à Formação Hilário na região do Cerro dos Martins. Um corpo de quartzo-diorito, intrusivo nas rochas vulcânicas e sedimentares, mostrou idade de 550 ±5 Ma (Pb-Pb em zircões) indicando um valor mínimo para a geração do minério do DCM. Esta idade confirma a posição estratigráfica desta rocha na Formação Acampamento Velho e também fornece uma idade mínima para a deposição da seqüência vulcano-sedimentar encaixante do DCM. Os sulfetos do DCM mostram δS34 CDT com valores relativamente homogêneos entre - 6.2 e + 0.9‰ (n= 7). O valor de δS34 CDT da calcopirita, levemente positivo (+0.9‰), indica uma origem magmática para o S, mas os valores negativos encontrados nestes sulfetos, poderiam indicar o envolvimento de outras fontes com enxofre reduzido. Entretanto, a presença de hematita nas paragêneses minerais indica que o minério foi formado sob condições oxidantes, modificando a composição isotópica original do enxofre magmático (δS34 CDT ~ 0‰) para valores negativos. As baritas analisadas apresentam valores com δS34 CDT entre +9.25 e +10.65‰ (n=4) indicando deposição em condições oxidantes, originadas pela mistura de um fluido magmático-hidrotermal com água meteórica. A composição isotópica do C das calcitas do DCM varia com δC13 PDB entre - 1,90 a -4,45‰, interpretada como resultante da mistura entre carbono de fonte magmática com mármores do embasamento. Inclusões fluidas em quartzo do minério indicam temperaturas de deposição entre 157 e 273 °C com mediana de 215 °C (n = 45). A composição isotópica do oxigênio da água em equilibrio com a calcita do fluido hidrotermal (T= 215 °C) mostra valores de δ O18 SMOW entre 3 e 14, indicando H2O de origem magmática, com contribuição de água meteórica. A razão Sr87/Sr86 das mesmas calcitas mostram valores entre 0,7068 – 0,7087, de crosta superior. Rochas plutônicas e vulcânicas do escudo com idades próximas de 550 Ma possuem razões iniciais Sr87/Sr86 entre 0,704 – 0,710, compatíveis com aquelas encontradas nas calcitas da mineralização. Os fluidos hidrotermais do magmatismo shoshonítico-alcalino com idade de 595 Ma e Sr87/Sr86 entre 0,7041 a 0,7053, também são candidatos a fonte do Sr dos carbonatos hidrotermais, mas necessitariam de um componente mais radiogênico. Assim, a fonte de C-O e Sr das calcitas do minério pode ter sido originada diretamente de um fluido magmático-hidrotermal ou de uma mistura entre este fluido e mármores do embasamento. Portanto, o depósito Cerro dos Martins é interpretado como de origem magmática-hidrotermal, relacionado ao evento magmático alcalinoshoshonítico, pós-colisional da Orogênese Dom Feliciano, com idade entre 595-550 Ma. Novos modelos exploratórios para depósitos de cobre no Escudo do Rio Grande do Sul devem considerar o magmatismo alcalino na gênese dos depósitos.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)