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151.
Jung A. Jung Young Baek Kim Young A. Kim Seung Bum Ryu Veronica Kim 《Journal of nanoparticle research》2011,13(6):2361-2374
Functional spherical solid and hollow particles of polysilsesquioxanes (PSQs) containing amine, thiol, and vinyl groups were
prepared by polymerizing organotrialkoxysilanes (OTASs) containing corresponding chemical groups. Fluorescent PSQ particles
were prepared by physically entrapping Rhodamine 6G, Coumarin 7, and Fluoresceine sodium salts. The intensity of fluorescent
light increased initially with increasing amount of entrapped fluorophores and then leveled off or decreased slightly after
reaching a maximum value. PSQ particles containing gold nanoparticles (GNPs), both inside and on the surface, were prepared
by the in situ reduction of gold ions by the PSQ particles. When the reduction reaction was carried out for extended periods
of time, the GNP that had formed inside the poly(3-mercaptopropyl)silsesquioxane (PMPSQ) and polyvinylsilsesequioxane (PVSQ)
particles underwent interesting morphological changes. PSQ particles containing amine and thiol groups fixed the GNPs on the
surface, which could be utilized further in binding amine-modified oligo-DNA strands. The aggregation of PSQ/GNP particles
combined with complementary oligo-DNA strands was examined to demonstrate that these particles could be applied to DNA assays
and isolation. The particles were characterized by scanning electron microscopy, transmission electron microscopy, solid state
nuclear magnetic resonance spectroscopy, ultraviolet/visible spectroscopy, and fluorescence microscopy. 相似文献
152.
AlF3-coating is attempted to improve the performance of LiNi0.5Mn1.5O4 cathode materials for Li-ion batteries. The prepared powders are characterized by scanning electron microscope, powder X-ray
diffraction, charge/discharge, and impedance. The coated LiNi0.5Mn1.5O4 samples show higher discharge capacity, better rate capability, and higher capacity retention than the uncoated samples.
Among the coated samples, 1.0 mol% AlF3-coated sample shows highest capacity after charge–discharged at 30 mA/g for 3 cycles, but 4.0 mol% coated sample exhibits
the highest capacity and cycling stability when cycled at high rate of 150 and 300 mA/g. The 40th cycle discharge capacity
at 300 mA/g current still remains 114.8 mAh/g for 4.0 mol% AlF3-coated LiNi0.5Mn1.5O4, while only 84.3 mAh/g for the uncoated sample. 相似文献
153.
We find sufficient conditions for the absence of harmonic L 2 spinors on spin manifolds constructed as cone bundles over a compact Kähler base. These conditions are fulfilled for certain perturbations of the Euclidean metric, and also for the generalized Taub-NUT metrics of Iwai-Katayama, thus proving a conjecture of Vi?inescu and the second author. 相似文献
154.
The effect of resonant fluorescent enhancement from a photonic crystal surface upon the fluorescent photobleaching rate of
Cyanine-5 labeled protein has been investigated. We show that the enhanced excitation mechanism for photonic crystal enhanced
fluorescence, in which the device surface resonantly couples light from an excitation laser, accelerates photobleaching in
proportion to the coupling efficiency of the laser to the photonic crystal. We also show that the enhanced extraction mechanism,
in which the photonic crystal directs emitted photons approximately normal to the surface, does not play a role in the rate
of photobleaching. We show that the photobleaching rate of dye molecules on the photonic crystal surface is accelerated by
30x compared to an ordinary glass surface, but substantial signal gain is still evident, even after extended periods of continuous
illumination at the resonant condition. 相似文献
155.
Ramón Herrera Eugenio San Martin 《The European Physical Journal C - Particles and Fields》2011,71(7):1701
Warm-intermediate inflationary universe models in the context of braneworld cosmologies are studied. This study is done in
the weak and strong dissipative regimes. We find that the scalar potentials and dissipation coefficients in terms of the scalar
field evolve as type-power-law and powers of logarithms, respectively. General conditions required for these models to be
realizable are derived and discussed. We also study the scalar and tensor perturbations for each regime. We use recent astronomical
observations to constrain the parameters appearing in the braneworld models. 相似文献
156.
Andreas Schwenke Philipp Wagener Stefan Nolte Stephan Barcikowski 《Applied Physics A: Materials Science & Processing》2011,104(1):77-82
The influence of fundamental and second harmonic wavelength on ablation efficiency and nanoparticle properties is studied
during picosecond laser ablation of silver, zinc, and magnesium in polymer-doped tetrahydrofuran. Laser ablation in stationary
liquid involves simultaneously the fabrication of nanoparticles by ablation of the target material and fragmentation of dispersed
nanoparticles by post irradiation. The ratio in which the laser pulse energy contributes to these processes depends on laser
wavelength and colloidal properties. For plasmon absorbers (silver), using the second harmonic wavelength leads to a decrease
of the nanoparticle productivity over process time along with exponential decrease in particle diameter, while using the fundamental
wavelength results in a constant ablation rate and linear decrease in particle diameter. For colloids made of materials without
plasmon absorption (zinc, magnesium), laser scattering is the colloidal property that limits nanoparticle productivity by
Mie-scattering of dispersed nanoparticle clusters. 相似文献
157.
Wen-ting Xu Hai-ling Tu Da-li Liu Ran Teng Qing-hua Xiao Qing Chang 《Journal of nanoparticle research》2011,13(12):7095-7098
An innovative fabrication technique for the nanometer-sized SiGe/Si heterostructure was developed in this study. Ge was induced
in Si substrate by two-step ion implantation. The spherical SiGe nanoclusters are self-assembled in the Si substrate by subsequent
rapid thermal annealing at 1,100 °C. The diameter of the spherical SiGe nanoclusters is 5–7 nm. Visible photoluminescence
from this nanometer-sized SiGe/Si heterostructure at room temperature was investigated. We found three peak energies of visible
luminescence spectra at 1.97, 2.13, and 2.16 eV, respectively. The luminescence intensity depends on the number of the nanoclusters
and will be decreased because of the micro-defects around the heterostructure, which is discussed in detail. 相似文献
158.
Khaled Habib 《Optical Review》2011,18(4):324-330
A critical (steady state) value of the thermal expansion coefficients of different coatings was determined by a nondestructive
technique (NDT) known as laser shearography. The behavior of organic coatings, i.e., ACE premium-grey enamel, a yellow acrylic
lacquer, and a gold nail polish on a metallic alloy, i.e., a carbon steel, was investigated over a temperature range of 20–60
°C. The value of the thermal expansion coefficients of coatings was derived from the slope of the plot of the thermal deformation
(strain) versus the applied temperature. The integrity of the coatings with respect to time was assessed by comparison the
measured coefficients of thermal expansion (CTE) to the critical (steady state) or asymptotic value of CTE. By shearography,
measurement of coating properties could be performed independent of parameters such as UV exposure, humidity, presence of
chemical species, and other parameters which may normally interfere with conventional methods of the assessing of the integrity
of coatings. Therefore, one may measure CTE of coatings, regardless of the history of the coating, in order to assess the
integrity of coatings. Also, the obtained shearography data were found to be in a reasonable trend with the data of electrochemical
impedance spectroscopy (EIS) in 3%NaCl solution. 相似文献
159.
A cathode material of an electrically conducting carbon–LiFePO4 nanocomposite is synthesized by wet ball milling and spray drying of precursor powders prior to a solid-state reaction. The
structural characterization shows that the composite is composed of LiFePO4 crystals and 4.8 wt.% amorphous carbon. Galvanostatic charge/discharge measurements indicate that the composite exhibits
a superior high energy and high cycling stability. This composite delivers a discharge capacity of 159.1 mAh g−1 at 0.1 C, 150.8 mAh g−1 at 1 C, and 140.1 mAh g−1 at 2 C rate. The capacity retention of 99% is achieved after 200 cycles at 2 C. The 18,650 cylindrical batteries are assembled
using the composite as cathode materials and demonstrate the capacity of 1,400 mAh and the capacity retention of 97% after
100 cycles at 1 C. These results reveal that the as-prepared LiFePO4–carbon composite is one of the promising cathode materials for high-performance, advanced lithium-ion batteries directed
to the hybrid electric vehicle and pure electric vehicle markets. 相似文献
160.
J. Babington B. A. van Tiggelen 《The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics》2011,65(3):367-372
We consider a simple atomic two-body bound state system that is overall charge neutral
and placed in a static electric and magnetic field, and calculate the magneto-electric
response function as a function of frequency. This is done from first principles using a
two-particle Hamiltonian for both an harmonic oscillator and Coulomb binding potential. In
the high frequency limit, the response function falls off as
1/ω
2 whilst at low frequencies it tends to a constant
value. 相似文献