3781
Smart soluble grafted polysiloxanes with potential applications in waterborne paints
Nor, I; Moleavin, I; Ibanescu, C; Sandu, V; Hurduc, N
MAY-JUN 2008, ENVIRONMENTAL ENGINEERING AND MANAGEMENT JOURNAL, 7, 342
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The synthesis of some grafted polysiloxane and azo-polysiloxanes with potential applications as rheology modifiers or surfactants for waterborne paints is reported. Nowadays it became very important to design environmentally friendly systems exhibiting the best end-uses properties. Due to their complex architecture and their sensitivity to UV radiation the studied polymeric systems exhibit very interesting rheological properties. All the polymers containing the azobenzenic groups in the side chains tire able to interact with the UV/VIS light, due to the photo-isomerization processes. Due to this property, the azo-based polymers are able to generate photo-stimuli response accomplished by strong supramolecular properties modifications.
3782
ELECTROCATALYSTS AND ELECTRODE DESIGN FOR BIFUNCTIONAL OXYGEN/AIR ELECTRODES
Nikolova, V; Iliev, P; Petrov, K; Vitanov, T; Zhecheva, E; Stoyanova, R; Valov, I; Stoychev, D
2008, FUNCTIONALIZED NANOSCALE MATERIALS, DEVICES AND SYSTEMS, +
DOI: 10.1007/978-1-4020-8903-9_22
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Electrocatalysts and appropriate electrode designs have been Studied with respect to the development of Bifunctional Air/Oxygen Electrode (BAE). Three groups of catalysts have been prepared: (i) CUxCo3-xO4; (ii) thin films of Co-Ni-Te-O and Co-Te-O and (iii) CoxOv/ZrO2 films. Different catalysts deposited on classical and originally designed GDE were compared by their electrochemical performances.
3783
Influence of polyvinylpyrolidone as an additive in electrochemical preparation of ZnO nanowires and nanostructured thin films
Enculescu, I; Matei, E; Sima, M; Enculescu, M; Sima, M; Ghica, C
MAR-APR 2008, SURFACE AND INTERFACE ANALYSIS, 40, 560
DOI: 10.1002/sia.2749
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Preparation of ZnO in different nano-morphological forms became a hot topic during the last few years. This tendency was motivated by the wide field of potential applications ranging from optics to electronics and spintronics. In the present work, we deal with the preparation of ZnO nanowires and nanostructured thin films using electrochemical deposition. ZnO nanowires were grown using the template approach, namely by replicating the nanopores of polycarbonate ion track membranes. The method yields uniform arrays of nanowires with the morphology controlled by the shape and size of the templates pores. Adding polyvinylpyrolidone as an additive in the growth bath became a necessity due to the fact that polycarbonate ion track membranes are usually hydrophobic and thus filling of the nanopores with the growth electrolyte is rather difficult. In order to better understand the influence of the additive on the electrochemical deposition of such nanostructures, similar experiments were performed for the deposition of ZnO thin films. Scanning electron microscopy, X-ray diffraction and optical spectroscopy measurements were performed for characterization of the deposited structures. Copyright (c) 2008 John Wiley & Sons, Ltd.
3784
Comparison between PZT thin films deposited on stainless steel and on platinum/silicon substrate
Stancu, V; Sava, F; Lisca, M; Pintilie, L; Popescu, M
2008, INTERFACIAL NANOSTRUCTURES IN CERAMICS: A MULTISCALE APPROACH, 94
DOI: 10.1088/1742-6596/94/1/012012
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Pb(Zr1-xTix)O-3 (PZT) thin films were prepared by sol-gel method on stainless steel (SS) and on platinum-coated silicon substrate (Pt/Si). The structure revealed by X-ray diffraction shows strong crystallographic orientation: (110) and (100), respectively. The crystallite size shows significant differences: d((00l))((SS))= 27.1 nm, d((h00))((Pt)) = 88 nm. The tetragonal splitting is (Delta c/c)((ss))=3.55 % and (Delta c/c)((pt))=3.32 %. The ferroelectric hysteresis loop in the static mode is characterized by remanentpolarization of 25 mu C/cm(2) and coercive field of 45 kV/cm for SS substrate, while for Pt/Si substrate the values are 10 mu C/cm(2) and 39 kV/cm, respectively. The leakage current is about 3 orders of magnitude lower in the PZT film deposited on SS. The better properties of the PZT deposited on SS are explained by the presence of large single crystal-like crystallites, which make the film closer to epitaxial ones. The results show the potential of growing epitaxial films on low-price substrates such as stainless-steel.
3785
Correlational analysis of superconducting mixed copper oxides
Zarioiu, C; Lascu, VG; Petrova, L; Novac, A
2008, MATHEMATICS AND COMPUTERS IN BIOLOGY AND CHEMISTRY, +
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A unifying structural scheme of all layered superconducting cuprates is proposed. The paper is a review based on a three level correlational analysis of the behaviour of one compound, of a homologous series and a third interseries analysis, revealing multiple correlation between the critical temperature value and different bond lengths via the oxygen content.
3786
Silver quantum dots deposited on YAG coated silicon wafer
Popescu, M; Sava, F; Lorincz, A; Daroczi, L; Kokenyesi, S; Mihailescu, IN; Socol, G
2008, ROMANIAN REPORTS IN PHYSICS, 60, 787
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Silver nano-dots have been deposited by a special procedure on the surface of a YAG coated silicon wafer. Sizes of 40-100 nm and a self-organized distribution according to the pattern of the pattern of defects (dislocations, terraces, etc.) on the wafer's surface were revealed. The procedure is simple and can be applied for the controlled deposition of small silver clusters to be used both in medicine and in nano-electronic devices.
3787
InN Thin Films Deposition by rf Magnetron Sputtering
Braic, MT; Zoita, CN; Braic, VT; Toacsan, MI; Ioachim, AT
2008, 2008 33RD INTERNATIONAL CONFERENCE ON INFRARED, MILLIMETER AND TERAHERTZ WAVES, VOLS 1 AND 2, +
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InN thin films were grown by reactive magnetron sputtering in a UHV system, using Ar and N-2 as working gases. Electrical and optical investigations of the films were correlated with their structural and morphological characteristics in order to obtain good quality films for THz applications.
3788
SAW AND FBAR RESONATORS FOR GHZ APPLICATIONS BASED ON MICROMACHINING AND NANOPROCESSING OF WIDE BANDGAP SEMICONDUCTORS
Muller, A; Konstantinidis, G; Neculoiu, D; Dragoman, M; Dinescu, A; Stavrinidis, A; Vasilache, D; Morosanu, C
2008, 2008 IEEE 25TH CONVENTION OF ELECTRICAL AND ELECTRONICS ENGINEERS IN ISRAEL, VOLS 1 AND 2, +
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The 4G mobile communication systems are expected to work within the 3-6 GHz range. The development, in the last years, of wide band gap (WGB) semiconductor technologies has opened the perspective of manufacturing SAW (surface acoustic wave) and FBAR (film bulk acoustic resonator) devices for application in the GHz frequency range. SAW type structures with a resonance frequency of about 2.8 GHz and 3.2 GHz have been successfully developed on a thin AlN layer sputtered on high resistivity silicon. Nanolithography was used to manufacture the interdigitated transducer. FBAR resonators have been manufactured using micromachining techniques of GaN/Si and AlN/Si wafers. FBAR structures based on self sustainable AlN and GaN membranes with a thickness lower then 0.5 mu m have been obtained. Resonance frequencies of about 4.8 GHz have been obtained for GaN based FBAR structures and about 10GHz for AlN based FBAR structures.
3789
PbSe nanowires grown by the template method
Sima, M; Enculescu, I; Sima, M
2008, OPTOELECTRONICS AND ADVANCED MATERIALS-RAPID COMMUNICATIONS, 2, 70
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PbSe nanowires were prepared using the template method. Polycarbonate ion track membranes with pore sizes ranging between 50 nm and 1.5 mu m were used as templates. The deposition of PbSe in the pores of the template was performed electrochemically. The influence of the deposition potential and membrane porosity on the morphology and composition of the prepared nanowires was studied. The composition of the wires has been determined by EDX measurements for different potentials. Scanning electron microscopy revealed the morphology of the deposited nanowires. X ray diffraction has been used for structural measurements.
3790
Vortex Molecule and i-soliton Studies in Multilayer Cuprate Superconductors
Shivagan, DD; Crisan, A; Shirage, PM; Sundaresan, A; Tanaka, Y; Iyo, A; Tokiwa, K; Watanabe, T; Terada, N
2008, 8TH EUROPEAN CONFERENCE ON APPLIED SUPERCONDUCTIVITY (EUCAS'07), 97
DOI: 10.1088/1742-6596/97/1/012212
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We observed two dissipation peaks in the field cooled AC susceptibility measurements on aligned multilayered cuprate Superconductor, (Cu,C)Ba2Ca2Cu3Oy [(Cu,C)-1223], and demonstrated that it is the direct experimental indication of the two-component vortex matter in the multilayered cuprates. We propose that, the second loss peak at lower temperature is due to the additional degree of freedom of the rotation of 'vortex molecule' composed of two fractional vortices, originated at two components, mediated by an i-soliton bond. To probe the dynamics of this vortex molecule, we measured frequency dependence of AC susceptibility response on aligned crystallites of (Cu,C)-1223 at different temperatures and DC fields. In second peak region, it gives resonance peak. The observed frequency dependence patterns of chi ''(T), for 0.5 T H-DC, are rescaled with the resonating frequencies and show tail at low frequency region indicating that the dissipation is due to rotation and twisting of vortex molecule. The temperature dependence of the average relaxation time shows that the vortex molecule rotation/twisting glass state follow critical slowing down process.