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991.
Hao-Jie Song Na Li Xiaojing Jing Xiaofei Yang Hua Tang 《Journal of nanoparticle research》2011,13(10):5457-5464
Nanocomposites composed of multi-wall carbon nanotubes (MWNTs) and Fe3O4 nanoparticles were fabricated using solvothermal method. Transmission and scanning electron microscopy, energy dispersive
spectroscopy, and X-ray powder diffraction measurements confirmed that these mulberry-like Fe3O4 microparticles which were combined with the MWNTs in a random pattern are constructed with tiny nanocrystallites (12 nm in
average diameter). The magnetic properties of the Fe3O4/MWNTs nanocomposites were measured using a vibrating sample magnetometer. Results showed that the Fe3O4/MWNTs nanocomposites exhibited superparamagnetism at room temperature and possessed a lower saturation magnetization (around
27.6 emu/g) than that of the pure Fe3O4 nanoparticles (around 33.7 emu/g). The Fe3O4/MWNTs nanocomposites have potential applications in engineering and medicine. 相似文献
992.
A Ce(IV)-based reducing capacity (CERAC) assay was developed to measure the total antioxidant capacity (TAC) of foods, in
which Ce(IV) would selectively oxidize antioxidant compounds but not citric acid and reducing sugars which are not classified
as antioxidants. The method is based on the electron-transfer (ET) reaction between Ce(IV) ion and antioxidants in optimized
acidic sulphate medium (i.e., 0.3 M H2SO4 and 0.7 M Na2SO4) and subsequent determination of the produced Ce(III) ions by a fluorometric method. The fluorescent product, Ce(III), exhibited
strong fluorescence at 360 nm with an excitation wavelength of 256 nm, the fluorescence intensity being correlated to antioxidant
power of the original sample. The linear concentration range for most antioxidants was quite wide, e.g., 5.0 × 10−7–1.0 × 10−5 M for quercetin. The developed procedure was successfully applied to the TAC assay of antioxidant compounds such as trolox,
quercetin, gallic acid, ascorbic acid, catechin, naringin, naringenin, caffeic acid, ferulic acid, glutathione, and cysteine.
The proposed method was reproducible, additive in terms of TAC values of constituents of complex mixtures, and the trolox
equivalent antioxidant capacities (TEAC coefficients) of the tested antioxidant compounds gave good correlations with those
found by reference methods such as ABTS and CUPRAC. 相似文献
993.
Sayed Abdel-Khalek Angelo Plastino Abdel-Shafy Fahmy Obada 《Central European Journal of Physics》2011,9(6):1426-1433
The dynamics of the Buck and Sukumar model (B. Buck and C. V. Sukumar, Phys. Lett. A 81, 132 (1981)) is investigated using different semi-classical information-theory tools. Their interplay reveals somewhat unexpected features. A new signature for the classical-quantum barrier is encountered thereby. 相似文献
994.
V. G. Arkhipkin V. A. Gunyakov S. A. Myslivets V. Ya. Zyryanov V. F. Shabanov Wei Lee 《Journal of Experimental and Theoretical Physics》2011,112(4):577-587
The transmission spectra of polarized light waves in a photonic crystal/liquid crystal (PC/LC) cell placed between crossed
polarizers and controlled by an electric or magnetic field have been studied experimentally and theoretically. Electro- and
magneto-optical switching based on the interference of polarized defect modes has been demonstrated. The transmission spectra
of the PC/LC cell have been calculated as a function of the voltage applied to the LC layer and the magnetic field strength.
The results of the calculations agree well with the experimental data. 相似文献
995.
JIAO-KAI CHEN 《Pramana》2011,76(3):397-405
The scalar products of polarization tensor and unit vectors are presented explicitly in spherical coordinate system expanded
in terms of spherical harmonic functions. By applying the obtained formulae, different wave components in the Salpeter wave
function can be shown explicitly, and the results are consistent with the results obtained by L–S coupling analysis. The cancelation formula is given, by which the terms with pure L = J + 1 wave components in the Salpeter wave function for the bound state with hP=(-1)J\eta_{\rm P}=(-1)^J can be obtained by separating the L = J − 1 wave components from mixing terms. This separation provides the basis for studying higher-order contributions from the
coupling of L = J − 1 and J + 1 wave states, and for solving the Salpeter equation exactly without approximation. 相似文献
996.
Bert Schroer 《Foundations of Physics》2011,41(10):1543-1568
The standard formulation of quantum gauge theories results from the Lagrangian (functional integral) quantization of classical
gauge theories. A more intrinsic quantum theoretical access in the spirit of Wigner’s representation theory shows that there
is a fundamental clash between the pointlike localization of zero mass (vector, tensor) potentials and the Hilbert space (positivity,
unitarity) structure of QT. The quantization approach has no other way than to stay with pointlike localization and sacrifice
the Hilbert space whereas the approach built on the intrinsic quantum concept of modular localization keeps the Hilbert space
and trades the conflict creating pointlike generation with the tightest consistent localization: semiinfinite spacelike string
localization. Whereas these potentials in the presence of interactions stay quite close to associated pointlike field strengths,
the interacting matter fields to which they are coupled bear the brunt of the nonlocal aspect in that they are string-generated
in a way which cannot be undone by any differentiation. 相似文献
997.
Xiongye Zhao Xuejun Guo Zhifeng Yang Hong Liu Qingqing Qian 《Journal of nanoparticle research》2011,13(7):2853-2864
Obtaining cost-effective iron (oxyhydr)oxide nanocrystallines is the essential prerequisite for their future extensive applications
in environmental remediation, such as the removal of heavy metals from contaminated waters. Here, various phases of iron (oxyhydr)oxide
nanocrystallines were simply synthesized from the phase-controlled transformation of amorphous hydrous ferric- or ferrous-oxide
in thermal solution with a certain ethanol/water ratio and with the presence of oleic acid. According to this method, goethite
nanorods in diameter of 3–4 nm, hematite nanocubes sized 20–30 nm, and magnetite nanoparticles in diameter of 6–7 nm were
successfully obtained. The final products of this transformation can be conveniently controlled by adjusting the reaction
parameters, such as pH, temperature, and ethanol/water ratio. Due to the enhanced specific surface area and probably the modifications
of the surface structure of nanocrystallines, the as-synthesized goethite nanorods and magnetite nanoparticles demonstrated
extremely strong As(III) affinity, with 5.8 and 54 times of As(III) adsorption, respectively, higher than the micron-sized
relatives. The cost-effective feature of as-synthesized nanocrystallines and their remarkably enhanced affinity toward arsenic
made them potentially applicable for the removal of arsenic and such like heavy metals from the contaminated environment. 相似文献
998.
The combination of the Biginelli reaction with click chemistry has been used for the one-pot synthesis of 1,2,3-triazole linked
dihydropyrimidinones from azides, aromatic aldehydes containing a propargyl ether group, urea, and 1,3-dicarbonyl compounds
using Cu(OAc)2/sodium ascorbate as catalyst in acetic acid under mild reaction conditions. 相似文献
999.
Vladislav G. Bagrov Dmitry M. Gitman Alexander D. Levin 《Journal of Russian Laser Research》2011,32(4):317-321
We consider an example where coherent states appear naturally (dynamically). We study the interaction between an arbitrary
quantized matter with a quantized electromagnetic field. Using an approximation that is similar to the Hartree–Fock one and
a variational principle, we demonstrate that the electromagnetic field is created by the charged matter exactly in Glauber
coherent states with parameters determined by mean currents of the matter. 相似文献
1000.
Daniela Carta Maria F. Casula Salvatore Bullita Andrea Falqui Anna Corrias 《Journal of nanoparticle research》2011,13(8):3489-3501
A series of novel nanocomposites constituted of FeCo nanoparticles dispersed in an ordered cubic Im3m mesoporous silica matrix (SBA-16) have been successfully synthesized using the wet impregnation method. SBA-16, prepared
using the non-ionic Pluronic 127 triblock copolymer as a structure-directing agent, is an excellent support for catalytic
nanoparticles because of its peculiar three-dimensional cage-like structure, high surface area, thick walls, and high thermal
stability. Low-angle X-ray diffraction, N2 physisorption, and transmission electron microscopy analyses show that after metal loading, calcination at 500 °C, and reduction
in H2 flux at 800 °C, the nanocomposites retain the well-ordered structure of the matrix with cubic symmetry of pores. FeCo alloy
nanoparticles with spherical shape and narrow size distribution (4–8 nm) are homogeneoulsy distributed throughout the matrix
and they seem in a large extent to be allocated inside the pores. 相似文献