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991.
Lin Wang Heqing Yang Hua Zhao Ru Yu Shi Liu Bao Bin Liu 《Applied Physics A: Materials Science & Processing》2011,102(1):61-68
The present work reports on novel four-layer thermally driven piezoresistive cantilevers implemented in one- and two-dimensional
arrays for parallel proximity scanning. There, the heater (metallic meander), the piezoresistive deflection sensor, and the
metal actuation film with significantly higher thermal expansion coefficient make up separate layers. Actuation efficiency
and cross-talk of the novel cantilever design are studied and compared with two recent designs: thin metallic film and ion-implanted
heater. The novel actuator, integrated on a 240 μm long and 3 μm thick silicon cantilever and supplied by V
dc=1 V enables deflections up to 5 μm of the AFM-tip with an actuation efficiency of about 170 nm/mW and suppressed cross-talk
between actuator and sensor. 相似文献
992.
Nanoflakes-built pyrite FeS2 microspheres were synthesized through a simple solvothermal process in mixed solvents of N, N-dimethytformamide and ethylene
glycol without using any surfactant. Both the composition of the solvents and urea were key factors for the formation of the
uniform products. It was found that the flake-like intermediate products transformed into FeS2 nanoflakes in situ in the early stage and Ostwald ripening growth mechanism would contribute to the uniformity of the final
products. Electrochemical studies revealed that the nanoflakes-built pyrite FeS2 microspheres exhibited large lithium storage capacities. This method can be easily controlled and is expected to be extendable
to the fabrication of other metal chalcogenides with controlled shape and structure. 相似文献
993.
M. A. Kudryashov A. I. Mashin A. S. Tyurin A. E. Fedosov G. Chidichimo G. De Filpo 《Technical Physics》2011,56(1):92-96
Silver/polyacrylonitrile (Ag/PAN) nanocomposites are synthesized at the stage of simultaneous acrylonitrile polymerization
and the reduction of silver ions from a mixture of silver nitrate AgNO3, acrylonitrile, and a photoinitiator. The synthesized films are transparent in the visible region and are characterized by
a uniform dispersion of silver nanoparticles in a PAN matrix without any macroscopic agglomeration. The effects of the metal
salt and photoinitiator concentrations on the size and density of metal nanoparticles in a composite are revealed. 相似文献
994.
995.
996.
Robbin S. Johnson 《Journal of nanoparticle research》2011,13(4):1467-1476
This article uses lessons from biotechnology to help inform the design of oversight for nanobiotechnology. Those lessons suggest
the following: first, oversight needs to be broadly defined, encompassing not just regulatory findings around safety and efficacy,
but also public understanding and acceptance of the technology and its products. Second, the intensity of scrutiny and review
should reflect not just risks but also perceptions of risk. Finally, a global marketplace argues for uniform standards or
commercially practical solutions to differences in standards. One way of designing oversight to achieve these purposes is
to think about it in three phases—precaution, prudence, and promotion. Precaution comes early in the technology or product’s
development and reflects real and perceived uncertainties. Prudence governs when risks and hazards have been identified, containment
approaches established, and benefits broadly defined. Transparency and public participation rise to the fore. The promotional
phase moves toward shaping public understanding and acceptance and involves marketing issues rather than safety ones. This
flexible, three-phase approach to oversight would have avoided some of the early regulatory problems with agricultural biotechnology.
It also would have led to a more risk-adjusted pathway to regulatory approval. Furthermore, it would avoid some of the arbitrary,
disruptive marketing issues that have arisen. 相似文献
997.
Ran Li Ming-Fan Li Ji-Rong Ren 《The European Physical Journal C - Particles and Fields》2011,71(2):1566
We extend the recently proposal of hidden conformal symmetry to the self-dual warped AdS3 black holes in topological massive gravity. It is shown that the wave equation of massive scalar field with sufficient small
angular momentum can be reproduced by the SL(2, R) Casimir quadratic operator. Due to the periodic identification in the φ direction, it is found that only the left section of hidden conformal symmetry is broken to U(1), while the right section
is unbroken, which only gives the left temperature of dual CFT. As a check of the dual CFT conjecture of self-warped AdS3 black hole, we further compute the Bekenstein–Hawking entropy and absorption cross section and quasinormal modes of scalar
field perturbation and show these are just of the forms predicted by the dual CFT. 相似文献
998.
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
999.
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
1000.
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