996 resultados para Variable Charge


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We report the low temperature electrical and magnetic properties of polypyrrole (PPy)/multiwall carbon nanotube (MWNT) coaxial composite fibrils synthesized by the electro-polymerization method. The iron-filled MWNTs were first grown by chemical vapor deposition of a mixture of liquid phase organic compound and ferrocene by the one step method. Then the PPy/MWNT fibrils were prepared by the electrochemical polymerization process. Electron microscopy studies reveal that PPy coating on the surface of nanotube is quite uniform throughout the length. The temperature dependent electrical resistivity and magnetization measurements were done from room temperature down to 5 and 10 K, respectively. The room temperature resistivity (rho) of PPy/MWNT composite fibril sample is similar to 3.8 Omega m with resistivity ratio R-5 K/R-300 K] of similar to 300, and the analysis of rho(T) in terms of reduced activation energy shows that resistivity lies in the insulating regime below 40 K. The resistivity varies according to three dimensional variable range hopping mechanism at low temperature. The magnetization versus applied field (M-H loop) data up to a field of 20 kOe are presented, displaying ferromagnetic behavior at all temperatures with enhanced coercivities similar to 680 and 1870 Oe at room temperature and 10 K, respectively. The observation of enhanced coercivity is due to significant dipolar interaction among encapsulated iron nanoparticles, and their shape anisotropy contribution as well.

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Electric field activated nonlinear transport is investigated in polypyrrole thin film in both in-plane and out-of-plane geometries down to 5 K and strong anisotropy is observed. A morphological model is suggested to explain the anisotropy through inter-chain and intra-chain transport. The deviation from the variable range hopping at low temperature is accounted by fluctuation assisted transport. From Zabrodaskii plots, it is found that electric field can tune the transport from insulating to metallic regime. Glazman-Matveev model is used to describe the nonlinear conduction. Field scaling analysis shows that conductance data at different temperature falls on to a single curve. Nonlinearity exponent, m(T) and characteristic length, L-E are estimated to characterize the transport in both the geometries. (C) 2013 AIP Publishing LLC.

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Multi-walled carbon nanotube (MWCNT)-polyvinyl chloride (PVC) nanocomposites, with MWCNT loading up to 44.4 weight percent (wt%), were prepared by the solvent mixing and casting method. Electron microscopy indicates high degree of dispersion of MWCNT in PVC matrix, achieved by ultrasonication without using any surfactants. Thermogravimetric analysis showed a significant monotonic enhancement in the thermal stability of nanocomposites by increasing the wt% of MWCNT. Electrical conductivity of nanocomposites followed the classical percolation theory and the conductivity prominently improved from 10(-7) to 9 S/cm as the MWCNT loading increased from 0.1 to 44.4 wt%. Low value of electrical percolation threshold similar to 0.2 wt% is achieved which is attributed to high aspect ratio and homogeneous dispersion of MWCNT in PVC. The analysis of the low temperature electrical resistivity data shows that sample of 1.9 wt% follows three dimensional variable range hopping model whereas higher wt% nanocomposite samples follow power law behavior. The magnetization versus applied field data for both bulk MWCNTs and nanocomposite of 44.4 wt% display ferromagnetic behavior with enhanced coercivities of 1.82 and 1.27 kOe at 10 K, respectively. The enhancement in coercivity is due to strong dipolar interaction and shape anisotropy of rod-shaped iron nanoparticles. (C) 2013 Elsevier B.V. All rights reserved.

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We report the localized charge carrier transport of two-phase composite Zn1-x Ni (x) O/NiO (0 a parts per thousand currency sign x a parts per thousand currency sign 1) using the temperature dependence of ac-resistivity rho (ac)(T) across the N,el temperature T (N) (= 523 K) of nickel oxide. Our results provide strong evidence to the variable range hopping of charge carriers between the localized states through a mechanism involving spin-dependent activation energies. The temperature variation of carrier hopping energy epsilon (h)(T) and nearest-neighbor exchange-coupling parameter J (ij)(T) evaluated from the small poleron model exhibits a well-defined anomaly across T (N). For all the composite systems, the average exchange-coupling parameter (J (ij))(AVG) nearly equals to 70 meV which is slightly greater than the 60-meV exciton binding energy of pure zinc oxide. The magnitudes of epsilon (h) (similar to 0.17 eV) and J (ij) (similar to 11 meV) of pure NiO synthesized under oxygen-rich conditions are consistent with the previously reported theoretical estimation based on Green's function analysis. A systematic correlation between the oxygen stoichiometry and, epsilon (h)(T) and J (ij)(T) is discussed.

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A micromachined electrometer, based on the concept of a variable capacitor, has been designed, modeled, fabricated, and tested. The device presented in this paper functions as a modulated variable capacitor, wherein a dc charge to be measured is up-modulated and converted to an ac voltage output, thus improving the signal-to-noise ratio. The device was fabricated in a commercial standard SOI micromachining process without the need for any additional processing steps. The electrometer was tested in both air and vacuum at room temperature. In air, it has a charge-to-voltage conversion gain of 2.06 nV/e, and a measured charge noise floor of 52.4 e/rtHz. To reduce the effects of input leakage current, an electrically isolated capacitor has been introduced between the variable capacitor and input to sensor electronics. Methods to improve the sensitivity and resolution are suggested while the long-term stability of these sensors is modeled and discussed. © 2006 IEEE.

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It is widely reported that threshold voltage and on-state current of amorphous indium-gallium-zinc-oxide bottom-gate thin-film transistors are strongly influenced by the choice of source/drain contact metal. Electrical characterisation of thin-film transistors indicates that the electrical properties depend on the type and thickness of the metal(s) used. Electron transport mechanisms and possibilities for control of the defect state density are discussed. Pilling-Bedworth theory for metal oxidation explains the interaction between contact metal and amorphous indium-gallium-zinc-oxide, which leads to significant trap formation. Charge trapping within these states leads to variable capacitance diode-like behavior and is shown to explain the thin-film transistor operation. © 2013 AIP Publishing LLC.

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The emittance of an extracted ion beam can be estimated to first order by a series of three linear independent profile measurements. This estimation is restricted to the evaluation of an upper limit of the emittance value for a homogeneous, nonfilamented beam. The beam is assumed to be round, respectively elliptical, without any structure of the intensity distribution, no space charge has been assumed for the drifting beam, and the optics is assumed to be linear. Instead of using three different drift sections, a linear focusing element with three different focusing strengths can be used. Plotting the beam radius as function of focusing strength, three independent solutions can be used to calculate the Twiss parameters alpha, beta, and gamma and furthermore the emittance epsilon. Here we describe the measurements which have been performed with the SECRAL ion source at Institute of Modern Physics Lanzhou.

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Severe primary immunodeficiencies (PID) are rare; their global incidence is comparable to that of childhood leukemia; they include more than 100 different entities. Clinical manifestations are: unusually severe or frequent infections or infections that do not respond to adequate treatment; an increased risk of certain malignancies; sometimes auto-immune manifestations. Delayed diagnosis and management of PID can lead to severe and irreversible complications or to death. PID can become manifest only in the adult; in common variable immune deficiency, the median age at diagnosis is between the 2nd and the 3rd decade of life. PID are often transmitted genetically; recent progresses in molecular biology have allowed more precise and earlier, including antenatal, diagnosis. Molecular treatment of 3 infants with a severe immunodeficiency has recently been achieved in April 2000. Those progresses were mostly based on the study of immunodeficiency databases. We present here the work of a Belgian group specialized in PID; meetings have started in June 1997. This group establishes guidelines for the diagnosis and treatment of PID, adapted to the local situation. The elaboration of a national register of PID is also underway; this has to provide all guaranties of anonymity to patients and families. Such a register already exists at the European level; it has provided the basis for new diagnostic and therapeutic possibilities. The inclusion of Belgian data in this register should allow essential progresses essential for our patients.

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The role of sodium surface species in the modification of a platinum (Pt) catalyst film supported on 8 mol% yttria-stabilised-zirconia (YSZ) was investigated under a flow of 20 kPa oxygen at 400 °C. Cyclic and linear sweep voltammetry were used to investigate the kinetics of the oxygen charge transfer reaction. The Pt/YSZ systems of both ‘clean’ and variable-coverage sodium-modified catalyst surfaces were also characterised using SEM, XPS and work function measurements using the Kelvin probe technique.

Samples with sodium coverage from 0.5 to 100% were used. It was found that sodium addition modifies the binding energy of oxygen onto the catalyst surface. Cyclic voltammetry experiments showed that higher overpotentials were required for oxygen reduction with increasing sodium coverage. In addition, sodium was found to modify oxygen storage and/or adsorption and diffusion increasing current densities at higher cathodic overpotential. Ex situ XPS measurements showed the presence of sodium hydroxide, carbonate and/or oxide species on the catalyst surface, while the Kelvin probe technique showed a decrease of approximately 250 meV in the work function of samples with more than 50% sodium coverage (compared to a nominally ‘clean’ sample).

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Suite aux notifications de cas de comportements suicidaires associés aux antidépresseurs (ADs) chez les jeunes, une mise en garde réglementaire a été émise en mai 2004 au Canada, et deux guides de pratique clinique ont été publiés dans la littérature en novembre 2007. L'objectif de ce mémoire fut d'évaluer l’association entre ces interventions de communication et le suivi médical de la population pédiatrique traitée par ADs au Québec. Une étude de cohorte rétrospective (1998-2008) a été menée chez 4 576 enfants (10-14 ans) et 12 419 adolescents (15-19 ans) membres du régime public d’assurance médicaments du Québec, ayant débuté un traitement par AD. Le suivi médical dans les trois premiers mois de traitement a été mesuré par l’occurrence et la fréquence de visites médicales retrouvées dans les banques de données de la RAMQ. Les facteurs associés à un suivi conforme aux recommandations ont été évalués à partir de modèles de régression logistique multivariés. Seuls 20% des enfants ou adolescents ont eu au moins une visite de suivi à chaque mois, en conformité avec les recommandations. La probabilité de recevoir un suivi médical conforme était plus élevée lorsque le prescripteur initial était un psychiatre. L’occurrence et la fréquence des visites n’ont pas changé après la publication de la mise en garde ou des recommandations. De ce mémoire on conclut que d'autres interventions visant à optimiser le suivi médical devraient être envisagées.

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En démontrant sa capacité d’identifier les pneumothorax, de différencier les différentes causes d’insuffisance respiratoire chez les patients dyspnéiques et de confirmer la position d’un tube endotrachéal lors d’une intubation endotrachéale, l’échographie pulmonaire a pris une place prépondérante dans la prise en charge des patients de soins critiques. La majorité des études, notamment celles sur l’intubation endotrachéale, ont évalué la performance de cliniciens possédant une expérience considérable en échographie pulmonaire et souvent dans un cadre idéal permettant des examens d’une durée prolongée. Considérant la disponibilité grandissante de l’échographie ciblée lors des situations de stabilisation et de réanimation des patients de soins critiques, nous voulions évaluer la capacité d’un groupe de clinicien hétérogène en termes de formation échographique à identifier la présence ou l’absence de glissement pleural sur de courtes séquences (comparable à la durée probable d’un examen lors de condition de réanimation) d’échographie pulmonaire enregistrées chez des patients intubés. Un total de 280 courtes séquences (entre 4 et 7 secondes) d’échographie pulmonaire démontrant la présence ou l’absence de glissement pleural chez des patients intubés en salle d’opération ont été enregistrées puis présentées de façon aléatoire à deux groupes de cliniciens en médecine d’urgence. Le deuxième groupe avait la possibilité de s’abstenir advenant une incertitude de leur réponse. Nous avons comparé la performance selon le niveau de formation académique et échographique. Le taux moyen d’identification adéquate de la présence ou l’absence du glissement pleural par participant était de 67,5% (IC 95% : 65,7-69,4) dans le premier groupe et 73,1% (IC 95% : 70,7-75,5) dans le second (p<0,001). Le taux médian de réponse adéquate pour chacune des 280 séquences était de 74,0% (EIQ : 48,0-90,0) dans le premier groupe et 83,7% (EIQ : 53,3-96,2) dans le deuxième (p=0,006). Le taux d’identification adéquate de la présence ou absence d’un glissement pleural par les participants des deux groupes était nettement supérieur pour les séquences de l’hémithorax droit par rapport à celles de l’hémithorax gauche (p=0,001). Lorsque des médecins de formation académique et échographique variable utilisent de courtes séquences d’échographie pulmonaire (plus représentatives de l’utilisation réelle en clinique), le taux d’identification adéquate de la présence ou l’absence de glissement pleural est plus élevé lorsque les participants ont la possibilité de s’abstenir en cas de doute quant à leur réponse. Le taux de bonnes réponses est également plus élevé pour les séquences de l’hémithorax droit, probablement dû à la présence sous-jacente du cœur à gauche, la plus petite taille du poumon gauche et l’effet accru du pouls pulmonaire dans l’hémithorax gauche. Considérant ces trouvailles, la prudence est de mise lors de l’utilisation de l’identification du glissement pleural sur de courtes séquences échographique comme méthode de vérification de la position d’un tube endotrachéal lors d’une intubation endotrachéale, et ce, particulièrement pour l’hémithorax gauche. Aussi, une attention particulière devrait être mise sur la reconnaissance du pouls pulmonaire lors de l’enseignement de l’échographie pulmonaire.

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Essai doctoral présenté à la Faculté des arts et des sciences en vue de l'obtention du grade de Doctorat (D.Psy) en psychologie option psychologie clinique.

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Hexadecanuclear copper mixed-valence complex 2 containing 10 Cu-II, centers and 6 Cu-I centers was isolated with N,O donor ligands. From the X-ray crystal structure, 2 was found to contain a centrosymmetric dimeric cation - each monomeric unit composed of eight copper centers. It displays a very broad and weak intervalence charge-transfer band around 1100 nm at room temperature in the solid state. Variable-temperature magnetic susceptibility measurements indicate an S = 1/2 ground state for half of 2, explicitly, each Cu-8 moiety has a g value around 2.26. Complex 2 was examined by NMR spectroscopy at room temperature in solution and by EPR at low temperature; the data indicates that the valence is delocalized in 2 at room temperature but localized at low temperature. ((C) Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2007)

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Single molecular junction conductances of a family of five symmetric and two unsymmetric perylene tetracarboxylic bisimides (PBI) with variable bay-area substituents were studied employing a scanning tunneling microscope (STM)-based break junction technique. The stretching experiments provide clear evidence for the formation of single molecular junctions and π–π stacked dimers. Electrolyte gating demonstrates a distinct gating effect in symmetric molecular junctions, which strongly depends on molecular structure and properties of the solvent/electrolyte. Weak π–π-coupling in the unsymmetric dimers prevents rectification.