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981.
Oxygen vacancy pairs have been suggested to play a role in the reduction of NO molecules on ceria and for the oxidation processes of reducible rare-earth oxides. The formation energy of the oxygen vacancy pairs and the changes in the structural and electronic properties of the ceria (110) surface with oxygen vacancy pairs are investigated using density-functional theory (DFT + U) methodology within the generalized gradient approximation. It is found that the excess electrons localize on the Ce ions neighbouring the vacancies, and the most stable structure for the oxygen vacancy pairs on the ceria (110) surface is at next-nearest-neighbour site. 相似文献
982.
983.
In this paper, we describe a facile and rapid method for preparing In2S3 nanoparticles via ultrasound dispersion. This method allows us to prepare In2S3 nanoparticles from bulk indium and sulfur with ease and without using expensive agents and in a short time. The possible growing mechanism of the In2S3 nanoparticles was presented. In addition, we provide detailed characterizations including TEM, XRD, TG-DTA, and XPS to study the shape, composition and structure of In2S3 nanoparticles. We also studied the tribology property of In2S3 nanoparticles made using this novel recipe. 相似文献
984.
F. Yang Z. Wang Y. Zhou F. Li J. Xu Y. Xu X. Cheng Y. Lu Y. Bo Q. Peng D. Cui X. Zhang X. Wang Y. Zhu Z. Xu 《Applied physics. B, Lasers and optics》2009,96(2-3):415-422
We have presented theoretical and experimental investigations of nanosecond (ns) deep-ultraviolet (DUV) 177.3 nm radiation by means of second harmonic generation (SHG) from a frequency-tripled Nd:YAG laser (355 nm, 49 ns and 10 kHz) in KBe2BO3F2 (KBBF) nonlinear crystal for the first time. A DUV KBBF-SHG numerical model, accounting for linear absorption, pump depletion, beam spatial birefringent walk-off and diffraction, is performed in the Gaussian approximation of spatial and temporal profiles. In the experiment, a maximum average output power of 14.1 mW at 177.3 nm was obtained. The dependence of 177.3 nm output power on the 355 nm pump power was simulated. The calculated results are in good agreement with the measured data. We used the model further to investigate the optical conversion efficiency, pulse width, beam spatial intensity profile and beam quality factor of the generated 177.3 nm light, in particular the effect of beam birefringent walk-off. 相似文献
985.
We report low temperature scanning tunneling microscopy and spectroscopy on graphene flakes supported on a graphite substrate. The experiments demonstrate that graphite is exceptionally well suited as a substrate for graphene because it offers support without disturbing the intrinsic properties of the charge carriers. The degree of coupling of a graphene flake to the substrate was recognized and characterized from the appearance of an anomalous Landau level sequence in the presence of a perpendicular magnetic field. By following the evolution of the Landau level spectra along the surface, we identified graphene flakes that are decoupled or very weakly coupled to the substrate. From the Landau level sequence in this flake, we extract the local Fermi velocity and energy of the Dirac point and find extremely weak spatial variation of these quantities confirming the high quality and non invasive nature of the graphite substrate. 相似文献
986.
C.Y. Zhang H.Z. Guo H. Yuan C. Lu L. Li J. Gao 《Solid State Communications》2009,149(29-30):1193-1196
We report a detailed experimental study of the fluctuations of acoustoelectric (AE) current induced by surface acoustic waves in a shallow-etched quantum point contact defined in a GaAs/AlxGa1?xAs heterostructure at 1.7 K. We observe that current fluctuations between two AE current plateaus are more obvious than those at the plateaus. Switching the metastable states of the impurities is considered as the physical origin of the current fluctuations. 相似文献
987.
X.P. Chen M.Y. Li Q. Liu Z. Han 《Physica C: Superconductivity and its Applications》2009,469(2-3):116-119
Effect of the evolution of the secondary phases in the first sintering process on the microstructure and critical current density of Bi-2223/Ag tapes has been studied. The amount and grain size of secondary phases were characterized by XRD and SEM/EDS. It has been found that both the microstructure and critical current of the fully reacted tapes depended strongly on the secondary phases formed in the first sintering process. The (Ca,Sr)2CuO3 and (Ca,Sr)14Cu24O41 phases were easily formed and to be stable at higher temperature, however, at lower temperature, the CuO particles appeared easily and keeping stable with dwelling time. The best conversion to Bi-2223, together with the lowest amount of the total secondary phases was achieved when samples treated at 830 °C in 8.5% O2. Samples with the lowest amount and minimum size of secondary phase produced in the first sintering process will obtain the best performance of the fully reacted tapes. The optimum sintering parameters are obtained by controlling the evolution of the secondary phases during the first sintering process. 相似文献
988.
989.
Di-You Jiang R. S. Wu S. S. Li Z. S. Wang 《International Journal of Theoretical Physics》2009,48(8):2297-2304
Two schemes, introducing the projective operator and the auxiliary qubit respectively, for controlled dense coding are investigated
by using a three-qubit symmetric state with entanglement, where the supervisor (Cliff) can control an average amount of information
transmitted from the sender (Alice) to the receiver (Bob) by adjusting the measurement angle θ. We show that the results for the average amounts of information are unique from the different two schemes. The schemes may
be extended to many-qubit systems. 相似文献
990.
Yongzheng Zhu Yanling Cao Juan Ding Zhihui Li Junsong Liu Yuanbin Chi 《Applied Physics A: Materials Science & Processing》2009,94(4):731-734
A non-close-packed three-dimensional photonic crystal of titania hollow spheres has been fabricated. The fabricated process
is based on the silica template technique, thermal sintering, and the sol–gel process. The band-structure calculations and
optical measurements both indicate that a quasi-full three-dimensional photonic bandgap located at the visible wavelength
has been presented between the eighth and ninth bands. This indicates that the non-close-packed structure of titania hollow
spheres was easier to open the complete photonic bandgaps than other face-centered cubic structures made by self-assembling
methods at the visible region. 相似文献