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71.
Bajaj VS Farrar CT Hornstein MK Mastovsky I Vieregg J Bryant J Eléna B Kreischer KE Temkin RJ Griffin RG 《Journal of magnetic resonance (San Diego, Calif. : 1997)》2011,(2):404-409
In this communication, we report enhancements of nuclear spin polarization by dynamic nuclear polarization (DNP) in static and spinning solids at a magnetic field strength of 9 T (250 GHz for g = 2 electrons, 380 MHz for 1H). In these experiments, 1H enhancements of up to 170 ± 50 have been observed in 1-13C-glycine dispersed in a 60:40 glycerol/water matrix at temperatures of 20 K; in addition, we have observed significant enhancements in 15N spectra of unoriented pf1-bacteriophage. Finally, enhancements of ∼17 have been obtained in two-dimensional 13C–13C chemical shift correlation spectra of the amino acid U–13C, 15N-proline during magic angle spinning (MAS), demonstrating the stability of the DNP experiment for sustained acquisition and for quantitative experiments incorporating dipolar recoupling. In all cases, we have exploited the thermal mixing DNP mechanism with the nitroxide radical 4-amino-TEMPO as the paramagnetic dopant. These are the highest frequency DNP experiments performed to date and indicate that significant signal enhancements can be realized using the thermal mixing mechanism even at elevated magnetic fields. In large measure, this is due to the high microwave power output of the 250 GHz gyrotron oscillator used in these experiments. 相似文献
72.
Vigreux C Barthélémy E Bastard L Broquin JE Barillot M Ménard S Parent G Pradel A 《Optics letters》2011,36(15):2922-2924
The feasibility of all-telluride integrated optics devices based on waveguides presenting a single-mode behavior in the spectral range (10-20 μm) is demonstrated. These waveguides are constituted of a several micrometer thick Te(82)Ge(18) film deposited onto a Te(75)Ge(15)Ga(10) bulk glass substrate by thermal coevaporation and further etched by reactive ion etching under the CHF(3)/O(2)/Ar atmosphere. The obtained structures were proven to behave as channel waveguides with a good single-mode transmission over the whole spectral range. These results allowed validating our technological solution for the fabrication of integrated optics modal filters for spatial interferometry. 相似文献
73.
M. El Assaid M’hamed El Aydi M. El Feddi Françis Dujardin 《Central European Journal of Physics》2008,6(1):97-104
The problem of a shallow donor impurity located at the centre of a symmetrical paraboloidal quantum dot (SPQD) is solved exactly. The Schrödinger equation is separated in the paraboloidal coordinate system. Three different cases are discussed for the radial-like equations. For a bound donor, the energy is negative and the solutions are described by Whittaker functions. For a non-bound donor, the energy is positive and the solutions become coulomb wave functions. In the last case, the energy is equal to zero and the solutions reduce to Bessel functions. Using the boundary conditions at the dot surfaces, the variations of the donor kinetic and potential energies versus the size of the dot are obtained. The problem of a shallow donor impurity in a Hemiparaboloidal Quantum dot (HPQD) is also studied. It is shown that the wave functions of a HPQD are specific linear combinations of those of a SPQD. 相似文献
74.
75.
H. Ben Naceur I. Moussa O. Tottereau A. Rebey B. El Jani 《Physica E: Low-dimensional Systems and Nanostructures》2009,41(10):1779-1783
Thin InAs epilayers were grown on GaAs(1 0 0) substrates exactly oriented and misoriented toward [1 1 1]A direction by atmospheric pressure metalorganic vapor phase epitaxy. InAs growth was monitored by in situ spectral reflectivity. Structural quality of InAs layers were studied by using high-resolution X-ray diffraction. No crystallographic tilting of the layers with respect to any kind of these substrates was found for all thicknesses. This result is discussed in terms of In-rich growth environment. InAs layers grown on 2° misoriented substrate provide an improved crystalline quality. Surface roughness of InAs layers depend on layer thickness and substrate misorientation. 相似文献
76.
77.
Yu. F. Krupyanskii E. G. Abdulnasyrov N. G. Loiko A. S. Stepanov K. B. Tereshkina G. I. El’-Registan 《Russian Journal of Physical Chemistry B, Focus on Physics》2012,6(2):301-314
The influence of hexylresorcinol on the structure, equilibrium fluctuations, and functional activity of water-soluble enzyme lysozyme was studied over a wide range of hexylresorcinol concentrations. Hexylresorcinol was found to be not only a stabilizer of lysozyme. At low hexylresorcinol concentrations (2 to 10 molecules per lysozyme globule), the activity of lysozyme sharply increased; activity began to decrease as the concentration grew. The influence of hexylresorcinol on the structural, dynamic, and functional lysozyme characteristics is well described by models of preferential hydration and preferential protein interaction with hexylresorcinol. The hexylresorcinol molecule consists of hydrophobic (alkyl radical) and hydrophilic (aromatic nucleus) moieties, which has additional regulatory action on the functional activity of lysozyme. As the concentration of hexylresorcinol increases, the effect of regions with preferential hydration begins to noticeably predominate over the effect of preferential interaction with hexylresorcinol. At hexylresorcinol concentrations higher than 100 molecules per lysozyme globule, the activity of lysozyme is fully inhibited. This is caused by the preferential hydration of the protein with the displacement of hexylresorcinol from direct contacts with it. The displacement of hexylresorcinol causes the formation of high-density hexylresorcinol micelles. Dense micelles interfere with the approach of substrates to the protein and fully inhibit its functional activity. The complete inhibition of lysozyme activity occurs at hexylresorcinol concentrations lower by an order of magnitude than glycerol inhibiting concentrations. 相似文献
78.
O.M. Lemine K. Omri B. Zhang L. El Mir M. Sajieddine A. Alyamani M. Bououdina 《Superlattices and Microstructures》2012
Magnetite (Fe3O4) nanoparticles were successfully synthesized by a sol–gel method. The obtained nanoparticles were characterized by X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), energy dispersive analysis by X-ray (EDAX), transmission electron microscopy (TEM), superconducting quantum interference device (SQUID) and Mössbauer spectrometry. XRD and Mössbauer measurements indicate that the obtained nanoparticles are single phase. TEM analysis shows the presence of spherical nanoparticles with homogeneous size distribution of about 8 nm. Room temperature ferromagnetics behavior was confirmed by SQUID measurements. The mechanism of nanoparticles formation and the comparison with recent results are discussed. Finally, the synthesized nanoparticles present a potential candidate for hyperthermia application given their saturation magnetization. 相似文献
79.
I. Najeh N. Ben Mansour H. Dahman A. Alyamani L. El Mir 《Journal of Physics and Chemistry of Solids》2012,73(6):707-712
Structural, electrical and morphological properties of electrical conducting nanoporous carbon structures, prepared at different pyrolysis temperatures by sol–gel method, were investigated. The effect of the measurement temperature on the electrical properties of the obtained sample pyrolysed at 675 °C was studied. The imaginary and real parts of the sample impedance versus frequency, in the range of 40 Hz–100 MHz, are investigated. The Nyquist diagrams were used to identify an equivalent circuit and the fundamental parameters of the circuit are determined at different temperatures with the aim to study the contributions of the grains and boundary grains to the conductivity. 相似文献
80.
T. Abdallah T.A. El‐Brolosy M. B. Mohamed K. Easawi S. Negm H. Talaat 《Journal of Raman spectroscopy : JRS》2012,43(12):1924-1930
Surface enhanced Raman scattering (SERS) of adsorbed molecule on colloidal gold nanoparticles of different shapes, namely nanospheres (NSs), nanorods (NRs), and nanoprisms (NPs) as well as the three NPs arrays of different interstice prepared by NS lithography, are studied with incident wavenumbers in the near‐dipole and near‐quadrpole regions of the nanoparticles. In the colloidal gold nanoparticles, the SERS enhancement is the largest for the sharp tip followed by the truncated tip NPs, then the NRs and least enhancement for the NSs. This decreasing order of enhancement occurs although the incident wavenumber was near the dipole resonance of NSs and the quadrupole resonance for the NPs. These varied enhancements are explained in part as due to the binding energies of the nanocrystal facets, but the larger contribution results from the plasmon electromagnetic fields. A parallel finite difference time domain (FDTD) calculations were carried out, which corporate the experimental results and show agreement with ratios of the SERS enhancement for the different shapes. The normalized SERS intensity for NPs of different interstice distances show a sharp rise with the decrease of the interstice distances because of interparticle dipolar and quadrupolar coupling as evidenced also by FDTD calculations. Furthermore, these calculations show that the enhancement is polarization independent for an incident wavelength near quadrupole resonance but polarization dependent for an incident wavelength near the plasmon dipole transition. In the last case, the enhancement is larger by an order of magnitude for a polarization parallel to the NPs bisector than for polarization normal to the bisector with no hot spots for the relatively large interstice dimensions used. Copyright © 2012 John Wiley & Sons, Ltd. 相似文献