4301
MgB2/Fe superconducting tapes made using mechanically milled powders in Ar and H-2 atmospheres
Kondo, T; Badica, P; Nakamori, Y; Orimo, S; Togano, K; Nishijima, G; Watanabe, K
OCT 1 2005, PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 426, 1237
DOI: 10.1016/j.physc.2005.02.104
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Fe-sheathed tapes of MgB2 with addition of SiC have been prepared by the powder-in-tube (PIT) method using a powder mixture mechanically milled in an argon or hydrogen atmosphere. The reactivity of the component powders in the mixtures, Mg, B and SiC, was significantly enhanced by mechanical milling, so that MgB, formed faster than in tapes fabricated from a hand-milled mixture. At the same time the number of impurity phases was higher, and the impurity phases of Mg2Si and Fe2B were observed only in these tapes. Mechanical milling also induced a lower quality of MgB2, especially for tapes produced from powders milled in a hydrogen atmosphere, with a significant influence on the values of the critical temperature T-C and critical field, J(C). (c) 2005 Published by Elsevier B.V.
4302
Fe-Cu granular thin films with giant magnetoresistance by thermionic vacuum arc method: Preparation and structural characterization
Kuncser, V; Mustata, I; Lungu, CP; Lungu. AM; Zaroschi, V; Keune, W; Sahoo, B; Stromberg, F; Walterfang, M; Ion, L; Filoti, G
OCT 1 2005, SURFACE & COATINGS TECHNOLOGY, 200, 983
DOI: 10.1016/j.surfcoat.2005.01.031
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Simultaneous discharges of Fe and Cu metal sources by thermoionic vacuum arc (TVA) were used as a new procedure for preparation of granular Fe-Cu thin films with sensibly enhanced room temperature giant magnetoresistive effects. The possibilities to produce thin films with a wide range of structural and magneto-transport characteristics are emphasized. The structural aspects of granular Fe-Cu thin films deposited onto Kapton are investigated via X-ray diffractometry, atomic force microscopy and Mossbauer spectroscopy. The magneto-transport properties are strongly related to composition, structure and magnetic interactions inside the films. (c) 2005 Elsevier B.V. All rights reserved.
4303
Modification of polyester track membranes by plasma treatments
Lazea, A; Kravets, LI; Albu, B; Ghica, C; Dinescu, G
OCT 1 2005, SURFACE & COATINGS TECHNOLOGY, 200, 533
DOI: 10.1016/j.surfcoat.2005.01.120
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The modification of the polyester track membranes by treatment in radiofrequency plasma generated by capacitive coupled parallel plate discharge in air and ammonia was studied. The investigation of the surface properties (roughness, pore size distribution, contact angle) before and after the plasma treatments was performed. The treatment resulted in increase of the surface roughness and of the pores effective diameter and change of wettability. Membranes presenting lower or higher contact angles, as compared with the initial one can be obtained by selecting adequate values for the radiofrequency power and treatment time values. (c) 2005 Elsevier B.V. All rights reserved.
4304
Optical photoinduced phenomena and holographic recording in amorphous As-Se thin films
Iovu, MS; Ciorba, VG; Colomeico, EP; Iovu, MA; Nastase, AM; Prisacari, A; Popescu, M; Shpotyuk, OI
OCT 2005, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 7, 2339
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The effect of light-induced photodarkening in amorphous As100-xSex (x=40 divided by 98) thin films for different thickness and film composition was investigated. It was established a strong dependence of the red shift of the absorption edge and refractive index under light irradiation on the film composition and thermal treatment. It was established that the more sensitive films to photodarkening and holographic recording correspond to non-stoichiometric compositions of As55Se45 and As60Se40 glasses. The experimental results are interpreted in terms of structural optical polymerization process, which includes the transformation of As4Se4 and Se-2 structural units in homogenius AsSe3/2 network.
4305
Green coffee decontamination by electron beam irradiation
Nemtanu, MR; Brasoveanu, M; Grecu, MN; Minea, R
OCT 2005, NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 240, 86
DOI: 10.1016/j.nimb.2005.06.092
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Microbiological load of green coffee is a real problem considering that it is extremely sensitive to contamination. Irradiation is a decontamination method for a lot of foodstuffs, being a feasible, very effective and environment friendly one. Beans and ground green coffee were irradiated with electron beams up to 40 kGy. Microbial load, rheological behavior, electron paramagnetic resonance (EPR) and visible spectroscopy were carried out. The results show that electron beam irradiation of green coffee could decontaminate it without severe changes in its properties. (c) 2005 Elsevier B.V. All rights reserved.
4306
Surface chemistry of plasma deposited ZrC hard coatings
Balaceanu, M; Braic, M; Braic, V; Vladescu, A; Negrila, CC
OCT 2005, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 7, 2560
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X-ray Photoelectron Spectroscopy (XPS) was used to investigate the chemical state of ZrC coatings deposited by cathodic arc method. A chemistry model of the ZrC films has been proposed. It was pointed out that on the films surface a highly oxidized passive layer, containing also carbon and oxygen as contaminants, was formed. The film bulk was composed by a mixture of ZrC (the dominant phase), ZrO2 and free carbon.
4307
Giant magnetoresistance effects in correlation with local magnetic interactions in Fe-Cu and Co-Cu granular thin films prepared by thermionic vacuum arc method
Lungu, CP; Mustata, I; Lungu. AM; Brinza, O; Zaroschi, V; Kuncser, V; Filoti, G; Ion, L
OCT 2005, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 7, 2512
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The simultaneous discharge of Fe (or Co) and, respectively, CU metal sources via thermionic vacuum arc (TVA) was used as a new processing method to obtain granular magneto-resistive films. The nano-structured films with thicknesses of 120 +/- 1 nm and 250 +/- 1 nm were obtained in definite conditions and subsequently characterized via electrical measurements at room temperature, in applied magnetic field. The paper reveals the importance of different specific factors (from size and dispersion effects to annealing influence) on the magnetoresistance behavior. A special contribution of the Mossbauer Spectroscopy, concerning the local structure and interactions as well as the magnetic phase characterization, was emphasized.
4308
Quantum confinement in nanocrystalline silicon
Ciurea, ML
OCT 2005, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 7, 2346
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Quantum confinement effects in different kinds of nanocrystalline silicon systems are experimentally and theoretically investigated. Porous silicon structured as a nanowire network and silicon nanodots embedded in amorphous silicon dioxide are studied. The main quantum confinement effect in both cases is represented by the appearance of new energy levels in the silicon band gap. The corresponding energies can be experimentally determined from the current - temperature characteristics, which show an Arrhenius-like behavior. The curves present several activation energies between liquid nitrogen temperature and room temperature. The energy levels can be evaluated from a quantum well model. The fundamental level is located at the top of the valence band. The change of the activation energy is then related with the filling of the levels. The ratios of the consecutive activation energies in the current - temperature characteristics prove that the excitation undergoes the angular momentum conservation law imposed by the applied electric field. The estimation of the mean size of the nanocrystals from the values of the activation energies is in good agreement with the microstructure investigations performed on the samples. The confinement levels are also in good agreement with the photoluminescence measurements..
4309
Ordering of the creeping vortex system in Bi2Sr2CaCu2O8+delta single crystals at low temperatures
Miu, L
OCT 2005, PHYSICAL REVIEW B, 72
DOI: 10.1103/PhysRevB.72.132502
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Zero-field-cooling magnetization relaxation measurements performed on Bi2Sr2CaCu2O8+delta single crystals in the low-temperature domain, with the external magnetic field oriented parallel to the c axis, reveal the ordering of the creeping vortex system due to the macroscopic currents induced in the sample. This explains many apparently conflicting results concerning the vortex phase diagram of disordered high-temperature superconductors, which have led to the dichotomy elastic vortex glass-plastic vortex assembly for the vortex phase at high magnetic fields.
4310
NRBS, RBS, TEM and SAED characterisation of sol-gel PZT films
Pantelica, D; Vasiliu, F; Ionescu, P; Negoita, F
OCT 2005, NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 240, 404
DOI: 10.1016/j.nimb.2005.06.166
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TEM-SAED investigations were performed on PZT films, to elucidate the role of pyrolysis conditions on orientation selection. For short pyrolysis, occurrence of the metastable fluorite and the interfacial PtxPb template layer are the factors inducing the (111) PZT orientation. For advanced pyrolysis, the TiO2 interfacial layer could be responsible for (100) PZT strong orientation. To further investigate the stoichiometry of PZT and interfacial layers, we performed heavy ion RBS and NRBS measurements. Only a substoichiometric TiO2-x layer is found for the short pyrolized film whereas two Ti and O rich layers were observed for advanced pyrolysis. The thicker oxygen rich TiO2-x bottom layer, observed by TEM and NRBS analysis, could lead to (100) texture, observed for oxidizing conditions at the interface during pyrolysis. (c) 2005 Elsevier B.V. All rights reserved.