Publications

6.078 articles found

3931

Theoretical and experimental study of dielectric and optical properties of some epiclon based polyimides

Cosutchi, AI; Hulubei, C; Buda, M; Botila, T; Ioan, S

JUL 2007, REVUE ROUMAINE DE CHIMIE, 52, 670

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The dielectric and optical properties of a series of aromatic polyimides synthesized by solution polycondensation of equimolar amounts of 5-(2,5-dioxotetrahydrofurfuryl)-3-methyl-3-cyclohexeiiyl-1,2-dicarboxylic acid anhydride (epiclon) and diamines, in N-methylpyrrolidinone as solvent, under inert atmosphere were investigated. The effect of diamine type, which contains phenilenic units in the vicinity of methylenic groups or ether linkages, on the refractive index and dielectric constant was examined from theoretical and experimental data. Minimizing polarizability by modification of number of polarizable groups per unit volume in polyimide backbone determines lower values for dielectric constant. Thus, optical dielectric constants obtained from the refractive indices are low and are less influenced by the Ar groups. Higher values of the dielectric constant corresponding to the dipolar polarization are observed by decreasing frequency from 100 KHz to 1 KHz due to the increase of the polarization of induced dipoles, depending on the chemical structures.

3932

Extrinsic tunneling magnetoresistance in thick films of CrO2-polystyrene composite

Sandu, V; Aldica, G; Sandu, E

JUL 2007, JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 9, 2124

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Polystyrene-CrO2 composite films with extrinsic tunneling magnetoresistance have been obtained. The electric conduction is 2D Mott variable range hopping in the temperature range 77-300 K. The magnetoresistance is negative when the field is aligned parallel to the current (in-plane geometry) and is due to the spin dependent intergrain tunneling of the charge carriers. It reaches a value MR = -10.6 % at room temperature and a magnetic field of 1T. When the field is applied in-plane but perpendicular to the current the magnetoresistivity is positive and has the average value MR = 3.56 %.

3933

Correlated electrons and transport in a quantum point contact and in a double-quantum-dot system

Bulka, BR; Kostyrko, T; Tolea, M; Dinu, IV

JUN 27 2007, JOURNAL OF PHYSICS-CONDENSED MATTER, 19

DOI: 10.1088/0953-8984/19/25/255211

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A problem of electronic correlations is considered for two specific mesoscopic systems: the quantum point contact (QPC) and the double quantum dot (2QD) system. The systems are described using a generalized Anderson Hamiltonian. We show that charge fluctuations are relevant for electronic transport. In the QPC a local accumulation of charge and the dynamical Coulomb blockade effect lead to the 0.7 structure in the conductance characteristics. The evolution of the conductance with a magnetic field and in non-equilibrium situations is presented as well. The double quantum dot is studied in the approach, in which correlations within the 2QD are treated exactly, whereas the coupling of the 2QD to the leads is considered in the approximation valid at temperatures above the Kondo temperature. We analyse the evolution of the gate voltage dependence of the spin correlation functions and the conductance with the change of the interdot hopping. For the hopping parameter greater than a threshold value of the on-dot repulsion the physics of the device is dominated by the ground state eigenstates of the 2QD and antiferromagnetic correlations in the case of the doubly occupied 2QD. With a decrease of the interdot hopping repulsion below the threshold we observe a significant reduction of the antiferromagnetic coupling between the dots together with an enhanced occupation of the triplet states.

3934

Effects of chemical structure on the electrical properties of some polymers with imidic structure

Cosutchi, AI; Hulubei, C; Buda, M; Botila, T; Ioan, S

JUN 26 2007, E-POLYMERS

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The electrical properties of two types of imidic polymers, i.e. copolymaleimides containing azobenzene groups and epiclon-based polyimides with their corresponding poly( amic acid)s, have been investigated. The dielectric constant and electrical conductance were experimentally measured over the 1-100 KHz frequency range. Also, the dielectric constants for all samples were determined from the experimentally and theoretically evaluated refractive indices at optical frequencies, when Maxwell's relationship can be applied. From the current-voltage characteristic I( U), electrical resistance can be determined, providing information on the relationship between the nature of the material and its electric properties. The obtained values show that epiclon-based polyimides and copolymaleimides present higher electrical resistivity than the poly( amic acid) s. The dissipation factor was evaluated, revealing low energy loss under the form of heat in the studied dielectrics. These results show that these polymeric materials are good insulators, which recommends them for microelectronic applications.

3935

Rotational fluctuations of water confined to layered oxide materials: Nonmonotonous temperature dependence of relaxation times

Frunza, L; Schonhals, A; Frunza, S; Parvulescu, VI; Cojocaru, B; Carriazo, D; Martin, C; Rives, V

JUN 21 2007, JOURNAL OF PHYSICAL CHEMISTRY A, 111, 5175

DOI: 10.1021/jp0717140

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The rotational molecular dynamics of water confined to layered oxide materials with brucite structure was studied by dielectric spectroscopy in the frequency range from 10(-2) to 10(7) Hz and in a broad temperature interval. The layered double hydroxide samples show one relaxation process, which was assigned to fluctuations of water molecules forming a layer, strongly adsorbed to the oxide surface. The temperature dependence of the relaxation rates has an unusual saddlelike shape characterized by a maximum. The model of Ryabov et al. (J. Phys. Chem. B 2001, 105, 1845) recently applied to describe the dynamics of water molecules in porous glasses is employed also for the layered materials. This model assumes two competing effects: rotational fluctuations of water molecules that take place simultaneously with defect formation, allowing the creation of free volume necessary for reorientation. The activation energy of rotational fluctuations, the energy of defect formation, a pre-exponential factor, and the defect concentration are obtained as main parameters from a fit of this model to the data. The values of these parameters were compared with those found for water confined to nanoporous molecular sieves, porous glasses, or bulk ice. Several correlations were discussed in detail, such as the lower the value of the energy of defect formation, the higher the number of defects. The pre-exponential factor increases with increasing activation energy, as an expression of the compensation law, and indicates the cooperative nature of the motional process. The involvement of the surface OH groups and of the oxygen atoms of the interlayer anions in the formation of hydrogen bonds was further discussed. For the birnessite sample, the relaxation processes are probably overlaid by a dominating conductivity contribution, which is analyzed in its frequency and temperature dependence. It is found that the conductivity of birnessite obeys the characteristics of semiconducting disordered materials. Especially the Barton/Nakajima/Namikawa relationship is fulfilled. Analyzing the temperature dependence of the direct current (dc) conductivity sigma(0) in detail gives some hint that sigma(0)(T) has also an unusual saddlelike form.

3936

Structure, properties and gas sensing effect of SnSe2 films prepared by pulsed laser deposition method

Popescu, M; Sava, F; Lorinczi, A; Socol, G; Mihailescu, IN; Tomescu, A; Simion, C

JUN 15 2007, JOURNAL OF NON-CRYSTALLINE SOLIDS, 353, 1869

DOI: 10.1016/j.jnoncrysol.2007.02.055

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Amorphous SnSe, films were prepared by pulsed laser deposition (PLD) from solid polycrystalline targets. The atomic scale structure has been revealed by X-ray diffraction. Hardness and electrical properties were measured. Strong gas sensing properties have been evidenced for the first time in heat treated films. (c) 2007 Elsevier B.V. All rights reserved.

3937

Hydrothermal synthesis and structural characterisation of xTiO(2)-(1-x)alpha-Fe2O3 mixed oxide nanoparticles

Diamandescu, L; Feder, M; Tarabasanu-Mihaila, D; Vasiliu, F

JUN 15 2007, APPLIED CATALYSIS A-GENERAL, 325, 275

DOI: 10.1016/j.apcata.2007.02.039

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xTiO(2)-(1- x)alpha-Fe2O3 (x = 0.0-1.0) mixed oxide nanoparticle, system ha, been synthesized by a hydothermal route, X-ray diffraction, Mossbauer spectroscopy and electron microscopy have been used to study the structure, morphology and substitution in the nanosized samples. Experimental evidence for the solubility limits of Ti4+, in alpha-Fe2O3 lattice and of Fe3+ in TiO2 structure is given. (c) 2007 Elsevier B.V. All rights reserved.

3938

Formation of icosahedral phase in an Al93Fe3Cr2Ti2 bulk alloy

Kim, KB; Xu, W; Tomut, M; Stoica, M; Calin, M; Yi, S; Lee, WH; Eckert, J

JUN 14 2007, JOURNAL OF ALLOYS AND COMPOUNDS, 436, L4

DOI: 10.1016/j.jallcom.2006.06.106

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The microstructural investigation of a suction-cast Al93Fe3Cr2Ti2 bulk alloy reveals that an icosahedral phase forms together with monoclinic Al-13(Fe,Cr)(4) and tetragonal Al3Ti in an alpha-Al matrix. The icosahedral phase is often surrounded by Al3Ti particles indicating that the formation of the icosahedral phase strongly competes with the Al3Ti phase. Chemical analysis reveals that Ti has a strong influence to stabilize the Al3Ti phase. In contrast, both Cr and Fe are effective to stabilize the icosahedral phase. (C) 2006 Elsevier B.V. All rights reserved.

3939

Asymmetric localization in disordered Landau bands

Nita, M; Aldea, A; Zittartz, J

JUN 6 2007, JOURNAL OF PHYSICS-CONDENSED MATTER, 19

DOI: 10.1088/0953-8984/19/22/226217

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We show that, due to band mixing, the eigenstate localization within the disordered Landau bands gets an asymmetric structure: the degree of localization increases in the lower part of the band and decreases in the upper one. The calculation is performed for a two-dimensional lattice with the Anderson disorder potential and we prove that this effect is related to the upper shift of the extended states within the band and is enhanced by the disorder strength. The asymmetric localization and the energy shift disappear when the interband coupling is switched off.

3940

Iron oxide in a silica matrix prepared by the sol-gel method

Predoi, D; Crisan, O; Jitianu, A; Valsangiacom, MC; Raileanu, M; Crisan, M; Zaharescu, M

JUN 4 2007, THIN SOLID FILMS, 515, 6323

DOI: 10.1016/j.tsf.2006.11.148

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FexOy-SiO2 nanocomposites were prepared by sol-gel method by using two SiO2 sources and Fe(SO4)(2)center dot 7H(2)O as raw materials. The amorphous gels were thermally treated up to 1000 degrees C. The initial gel and the thermally treated samples were characterized by thermo-gravimetric analysis (TGA) and differential thermal analysis (DTA) and infrared spectroscopy. The presence of hematite was confirmed by the obtained Mossbauer spectra which showed the characteristic sextet. The total amount and the size distributions of the hematite nanoparticles can be controlled via the initial precursors and subsequent by annealing conditions. (C) 2006 Elsevier B.V. All rights reserved.