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18篇 您的检索式:作者名="Murozono"
    题名 作者 年代 出处 被引量
1Neuroprotective and neurotoxic effects of cyclosporine A on transient focal ischemia in mdrla knockout mice显示文摘Murozono M Matsumoto S Matsumoto E 2004Eur J Pharmacol2004,498,13:1
2Plasma fibronectin supports neuronal survival and reduces brain injury following transient focal cerebral ischemia but is not essential for skin-wound healing and hemostasis显示文摘Sakai T Johnson KJ Murozono M 2001Nat Med2001,7,3:1
3Hyperthermia-induced cardioprotection is potentiated by ischemic postconditioning in rats显示文摘MUROZONO Y TAKAHASHI N SHINOHARA T 2009Exp Biol Med (Maywood)2009,234,5:1
4Design strategy and development of spherical silicon solar cell with semi-concentration reflect or system 显示文摘Minemotot T Murozono M Yamaguchi Y 2006Solar Energy Materials & Solar Cells2006,90,1819:1
5Plasma fibronectin sup- ports neuronal survival and reduces brain injury following transi- ent focal cerebral ischemia but is not essential for skin - wound healing and hemostasis显示文摘Sakai T Johnson KJ Murozono M 2001Nat Med2001,7,3:1
6Buckling and quasis- tatic thermal-structural response of asymmetric rolled-up so- lar array 显示文摘MUROZONO M THORNTON E A 1998Journal of Spacecraft and Rockets1998,35,2:1
7Plasma fibronectin supports neuronal survival and reduces brain injury following transient focal cerebral ischemia but is not essential for skin-wound healing and hemostasis 显示文摘Sakai T Johnson KJ Murozono M 2001Nat Med2001,7,:1
8Recent technical advances in thin-film CdS/CdTe solar cells显示文摘K Omura A Hanahusa T Arita H Higuchi T Aramoto T Nishio S Sibutani S Kumazawa M Murozono 1996Renewable Energy1996,,1:1
9Plasma fibronectin supports neuronal survival and reduces brain injury following transient focal cerebral ischemia but is not essential for skin-wound healing and hemostasis显示文摘SAKAI T JOHNSON KJ MUROZONO M 2001Nat Med2001,7,3:1
10Buckling and quasistatic thermal-structural response of asymmetric rolled-up solar array显示文摘Murozono M Thornton E A 1998J Spacecraft and Rockets1998,35,2:1
11Plasma fibronectin supports neunmal survival and reduces brain injury following transient focal cerebral iachemia but is not essential for skin-wound healing and hemostasis显示文摘SAKAI T JOHNSON KJ MUROZONO M 2001Nat Med2001,7,3:1
12Drying of coals by using su- percritical carbon dioxide显示文摘Iwai Y Amiya M Murozono T 1998Industrial and Engineering Chemis- try Research1998,37,:1
13Physical properties of low rank coals dried with supercritical carbon dioxide 显示文摘Iwai Y Murozono T Koujina Y 2000Journal of Supercritical Fluids2000,18,:1
14Plasma fibronectin supports neuronal survival and reduces brain injury following transient focal cerebral ischemia but is not essential for skin-wound healing and hemostasis显示文摘 Johnson KJ Murozono M 2001J Nature Medicine2001,7,:1
15Buckling and quasistatic thermal-structural response of asymmetric rolled-up solar array 显示文摘Murozono M Thornton E A 1998J Spacecraft and Rockets1998,35,2:1
16Plasma fibronectin supports neuronal survival and reduces brain injury following transient focal cerebral ischemia but is not essential for skin-wound healing and hemostasis显示文摘Sakai T Johnson KJ Murozono M 2001Nat Med2001,7,3:1
17Spherical silicon solar cell with reflector cup fabricated by decompression dropping method显示文摘A spherical Si solar cell with a reflector cup was successfully fabricated by a dropping method at decompression state. In the dropping method, melted Si droplets were instilled at decompression state (0.5×105 Pa) to reduce crystal growth rate, dominating crystal quality such as dislocation density in crystal grains. Spherical Si solar cells were fabricated using the spherical Si crystals with a diameter of 1 mm and then mounted on a reflector cup. The current-voltage measurement of the solar cell shows an energy conversion efficiency of 11.1% (short-circuit current density (Jsc): 24.7 mA·cm-2, open-circuit voltage: 601 mV, fill factor: 74.6%). Minority carrier diffusion length determined by surface photovoltage method was 98 μm. This value can be enhanced by the improvement of crystal quality of spherical Si crystals. These results demonstrate that spherical Si crystals fabricated by the dropping method has a great potential for substrate material of high-efficiency and low-cost solar cells.MINEMOTO Takashi OKAMOTO Chikao MUROZONO Mikio TAKAKURA Hideyuki HAMAKAWA Yoshihiro 2006Rare Metals2006,25,z1:0
18Impact of thermal history of spherical silicon crystal on its crystal quality显示文摘Spherical Si solar cells were fabricated based on multicrystalline Si spheres produced by a dropping method. The thermal history of Si spheres were calculated by numerical simulation. The simulation result reveals that heat transfered by convection is greater than heat transfered by radiation. Considering the calculation results, Si spheres were dropped in the free-fall tower at low pressure state (0.2×105-0.5×105 Pa) to slow heat transfer by convection. After dash etching for 60 min, low pressure Si spheres have less etch pits, i.e., 80% for etch pit density and 8% for etch pit-area ratio compared to normal one. Furthermore, the conversion efficiency was improved from 6.57% (normal pressure spherical Si solar cell) to 9.56% (low one), which is 45% relative increase. The improvement is due to decrease of undercooling and increase of crystal growth duration. These results demonstrate that the dropping method at low pressure state is useful for fabricating high performance spherical Si solar cells.TSUJIYA Kaoru MINEMOTO Takashi MUROZONO Mikio TAKAKURA Hideyuki HAMAKAWA Yoshihiro 2006Rare Metals2006,25,z1:0
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