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Nobuaki Negishi Koji Takeuchi Takashi Ibusuki 《Journal of Sol-Gel Science and Technology》1998,13(1-3):691-694
Titanium dioxide (TiO2) coated glass-plate thin film photocatalysts for elimination of air pollutants, were prepared by the dip-coating process with titanium alkoxide including polyethylene glycol (PEG). The surface structure of these thin films changed drastically with the size of the PEG. They were either transparent or opaque. Nitrogen oxides (NOx), one of the most hazardous of air pollutants, were found to be efficiently eliminated by the thin film photocatalyst. The photocatalytic activities of the transparent and opaque thin films were found to be almost equal. This may be due to the two films having the same surface area. The highest activity was obtained for thin films around 1 m. 相似文献
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In this paper, we investigate a delayed HIV infection model that considers the homeostatic proliferation of CD4+ T cells. The existence and stability of uninfected equilibrium and infected equilibria(smaller and larger ones) are studied by analyzing the characteristic equation of the system. The intracellular delay does not affect the stability of uninfected equilibrium, but it can change the stability of larger positive equilibrium and Hopf bifurcation appears inducing stable limit c... 相似文献
116.
Satoshi Iikubo Shin-ichi Shamoto Ken Takeuchi Katsuaki Kodama 《Journal of Physics and Chemistry of Solids》2010,71(11):1603-1608
The local crystal structure of dried and deuterated nano-manganese-oxide powder samples was studied via atomic pair distribution function analysis of X-ray and neutron powder diffraction data. The protonated sample shows ultrahigh efficiency as a gold adsorbent even from ppt-level aqueous solutions such as seawater. We show that the nano-manganese-oxide particles have an R-MnO2-type local crystal structure. The possible role of the protons on the surface of the nano-particles is discussed. 相似文献
117.
J. Kawanaka Y. Takeuchi A. Yoshida S. J. Pearce R. Yasuhara T. Kawashima H. Kan 《Laser Physics》2010,20(5):1079-1084
A MOPA laser system for high pulse energy and high average power has been developed by using a cryogenic Yb:YAG. In the regenerative
amplifier with our original TRAM architecture, the high pulse energies of 6.5 and 1.5 mJ were obtained at the repetition rate
of 200 Hz and 1 kHz, respectively. An optical efficiency was as high as ηo-o = 9.3% with an excellent beam quality of M
2 < 1.1, which ensured that a cryogenic Yb:YAG TRAM had a high thermal strength. The following four pass power amplifier with
a cryogenic Yb:YAG rod showed 140 mJ at 100 Hz. Both a high optical efficiency of ηo-o = 30% and a high slope efficiency of ηs = 44% showed that an efficient laser operation could be realized for a power amplification with both a high pulse energy
and a high average power by using a cryogenic Yb:YAG. 相似文献
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In this paper we propose a numerical reconstruction method for solving a backward heat conduction problem. Based on the idea
of reproducing kernel approximation, we reconstruct the unknown initial heat distribution from a finite set of scattered measurement
of transient temperature at a fixed final time. Standard Tikhonov regularization technique using the norm of reproducing kernel
is adopt to provide a stable solution when the measurement data contain noises. Numerical results indicate that the proposed
method is stable, efficient, and accurate. 相似文献