Publications

6.078 articles found

3841

Modelling spatial distribution of defects and estimation of electrical degradation of silicon detectors in radiation fields at high luminosity

Lazanu, S; Lazanu, I

DEC 11 2007, NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 583, 168

DOI: 10.1016/j.nima.2007.08.206

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The irradiation represents a useful tool for determining the characteristics of defects in semiconductors as well as a method to evaluate their degradation, a fact with important technological consequences. In this contribution, starting from available data on the degradation of silicon detector characteristics in radiation fields, these effects are explained in the frame of a model that supposes also the production of the Si-FFCD defect due to irradiation. The displacement threshold energies different for different crystallographic axes, considered as parameters of the model, are established and the results obtained could contribute to clarify these controversial aspects. Predictions of the degradation of electrical parameters (leakage current, effective carrier concentration and effective trapping probabilities for electrons and holes) of DOFZ silicon detectors in the hadron background of the LHC accelerator, supposing operation at -10 degrees C, are done. The non-uniformity of the rate of production of primary defects and of complexes, as a function of depth, for incident particles with low kinetic energy was obtained by simulations using some particular and very simplifying assumptions, suggesting the possible important contribution of the low-energy component of the background spectra to detector degradation. (c) 2007 Elsevier B.V. All rights reserved.

3842

Electric and magnetic response of Li-doped YBa2Cu3O7(LiF)(x) under neutron irradiation

Sandu, V; Aldica, G; Sandu, E; Nita, P

DEC 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 3836

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We investigate the effect of neutron irradiation on the electric and magnetic properties, including the enhancement of the critical current density, of ceramics YBa2Cu3O7(LiF)(x) samples. The most important finding has been that the level of Li-doping is crucial for the postirradiation response. The irreversibility increases for more than two times in the samples with x = 0.08.

3843

Structural investigations on yttria-doped zirconia nanopowdeirs obtained by sol-gel method

Vasile, BS; Ghitulica, C; Popescu-Pogrion, N; Constantinescu, S; Mercioniu, I; Stan, R; Andronescu, E

DEC 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 3780

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The attractive properties of zirconia, particularly fracture toughness, wear resistance and chemical stability, have led to vast research efforts designed to investigate, characterize and develop such materials. Applications vary from structural, mechanical, biomedical to electrical, especially the fuel cells field. The current study is aiming at preparation and structural characterization Of 10% Y2O3 stabilized ZrO2 nanometric powders. The sol-gel method is known to be easy to use for producing various kinds of materials, structured at nanometric level, so was chosen for the elaboration of powders. Different thermal treatments were applied to the obtained materials, which were consequently investigated through thermal analysis, X-ray diffraction (XRD) scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The characteristics Of Y2O3 doped zirconia powders are influenced by the processing parameters and proved promising for further applications in, for example, the Solid Oxides Fuel Cell field.

3844

Interfacial titanium oxide between hydroxyapatite and TiAlFe substrate

Nelea, V; Morosanu, C; Bercu, M; Mihailescu, IN

DEC 2007, JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 18, 2354

DOI: 10.1007/s10856-007-3135-1

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The interface between nano-crystalline hydroxyapatite (HA) thin films and a titanium alloy (Ti5Al2.5Fe) has been studied by means of Fourier transform infrared spectrophotometry and X-ray diffraction at grazing incidence. The HA thin films were deposited by radio-frequency magnetron sputtering in low pressure dry argon on substrates kept at low temperature or heated at 550 degrees C. The effect of film treatment by sputtering and annealing in humid air, as a simple, effective way of restoring the crystallinity and stoichiometry of the HA bulk, was studied in correlation with the development of a titanium oxide layer at the film-substrate interface. An interfacial TiO2 film grew at the interface during annealing in moist air, while a TiO2 layer diffused into the HA films when directly sputtered at 550 degrees C. The formation of an interfacial titanium oxide layer was inhibited by the insertion of a crystalline TiN buffer interlayer between the substrate and the HA film. Separately, the mechanical characteristics of the different HA films were monitored by nanoindentation to find out how they had been affected.

3845

Microwave dielectric properties of BaTi4O9-Nd2O3, BaTi4O9-Sm2O3 and BaTi4O9-WO3 ceramics

Cernea, M

DEC 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 3794

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Barium tetratitanate (BaTiO9) powder, synthesized by coprecipitation method, was used to prepare BaTi4O9-Nd2O3, BaTi4O9-Sm2O3 and BaTi4O9-WO3 ceramics with microwave dielectric properties. The structure and microwave dielectric properties were studied. BaNd2Ti5O14 and BaSm2Ti4O12 single-phase ceramics were obtained from BaTi4O9:Nd2O3=1:1 and BaTi4O9:Sm2O3=1:1, respectively. A multiple phases ceramic containing mainly BaWO4 and small amounts of Ba2Ti9O20 and BaTi4O9 was obtained from BaTi4O9:WO3=1:1. BaTi4O9-Nd2O3, BaTi4O9-Sm2O3 and BaTi4O9-WO3, ceramics sintered at 1375 degrees C for 8.5 h in air, shown good microwave dielectric properties.

3846

Electrical characteristics of nano-PbS/SiO2/Si heterostructures obtained by chemical bath method

Goldenblum, A; Stancu, V; Buda, M; Iordache, G; Botila, T; Negrila, C

DEC 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 3802

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The PbS/SiO2/Si structures show a clockwise hysteresis of capacitance-voltage (C-V) characteristics. The loop width increases with temperature and sweep time. The conductance-voltage (G-V) characteristics also present a hysteresis effect with two bumps. Both characteristics show a strong shift with frequency. We show that these effects are determined by the positive mobile ions injected in the oxide region during the chemical bath deposition of PbS and by the high concentration Of Si/SiO2 interface states. The corresponding C-V and G-V characteristics are simulated and the main peculiarities of the experimental results are well reproduced by the modeled curves.

3847

Electrical conduction in initial field assisted sintering stages

Aldica, G; Khodash, V; Badica, P; Groza, JR

DEC 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 3870

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Field Activated Sintering Techniques (FAST) are increasingly used to consolidate metal and ceramic powders. They combine application of a pulsed electrical current with external pressure to activate the densification process. The nature of electrical field/current interaction with powder systems is not clear yet. In this regard, in-situ transport measurements and microstructural analyses were carried out during pulsed current application in the FAST processing of Ni powders. Our experimental results were compared with existing electrical conduction theories and observed effects were relatively well explained qualitatively within these theories. Under electrical field it was confirmed that no voltage-current phase-shift occurs at elevated operating interfacial temperatures. For the field situation a higher applied pressure is decreasing the contact instability among particles contacts and of the sintering onset temperature. Microstructural investigations of the FAST-sintered samples indicate rather distribution of the higher density regions and a considerable increase of neck formation above 340 degrees C.

3848

Synthesis of calcium phosphate thin layers of increased biological activity by chemical growth in simulated body fluids

Neamtu, J; Stan, GE; Morosanu, C; Ducu, C; Popescu, A; Mihailescu, IN

DEC 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 3826

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We studied the chemical growth of calcium phosphate nanostructured coatings onto silicon wafers pre-covered with carbonated polycrystalline hydroxyapatite films. Silicon wafers were covered with hydroxyapatite thin layers by radio frequency magnetron sputtering and then immersed in 370 degrees C simulated body fluids for up to 20 days. Immersed structures were extracted every 2 days for studies by Fourier transform IR spectrometry. The chemically grown layers were further analyzed by X-ray diffraction and scanning electron microscopy. The growth kinetics of calcium phosphate deposits was monitored by estimating the area of phosphate, carbonate and water stretching bands of the recorded infra-red vibrational spectra. Sequential annealing in vacuum up to 950 degrees C was applied to elucidate the nature of incorporated water. Our studies revealed that the layers growing in simulated body fluid are rougher than initial hydroxyapatite interlayers, contain carbonates, include water in interlayer's voids and have therefore an increased biological activity for promoting faster implants integration with human bone tissues.

3849

Lanthanum zirconate nanoparticles and ceramics produced using a nitrate-modified alkoxide synthesis route

Ion, ED; Malic, B; Kosec, M

DEC 2007, JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 44, 209

DOI: 10.1007/s10971-007-1625-8

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Fine lanthanum zirconate powder was prepared by thermally decomposing a nitrate-alkoxide-based precursor derived from dehydrated lanthanum nitrate, zirconium n-butoxide and 2-methoxyethanol. Upon heating, the decomposition of the organic groups was promoted by the nitrate groups, yielding a porous powder that crystallized into a pyrochlore phase at 800 degrees C. The powder that was heat treated at 900 degrees C for 1 h was composed of friable agglomerates of approximately 60-nm-sized nanoparticles. The ceramics obtained from the powder heat treated at 900 degrees C and milled for 30 min reached a relative density of 97.9 % after sintering at 1,400 degrees C for 10 h, which is at least 100 degrees C lower than the typically reported temperatures for this material.

3850

Tunneling magneto-resistance granular thin films deposited by thermo-ionic vacuum arc technique

Mustata, I; Anghel, A; Lungu, CP; Pontilian, O; Kuncser, V; Schinteie, G

DEC 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 3820

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Co-MgO granular films presenting TMR effects were prepared by thermo-ionic vacuum arc method with the simultaneous ignition of plasma in Co and MgO vapors. Morphologic, structural and magnetic behaviors were analyzed in as prepared and annealed samples. The influence of the Co content on the magnetic properties of the prepared films was analyzed, in correlation with tunneling magneto-resistance effects. The tunneling magneto-resistance effect is maximal for certain Co content. This behavior was interpreted by the contrary effects of decreasing the average size of the magnetic grains, and hence the average inter-grains distance at higher Co relative content, and the enhanced magnetic disorder in very fine grains dispersed in the insulating matrix.