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19篇 您的检索式:作者名="Susai"
    题名 作者 年代 出处 被引量
1Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells显示文摘Susai T Kaneko M Nakato K 2001International Journal of Hydrogen Energy2001,26,:1
2Synergistic corrosion inhibition by the sodium dodecylsulphate-Zn^2+ system显示文摘Susai Rajendran Reenkala S M Noreen Anthony 2002Corrosion Science2002,44,:1
3Corrosion inhibition by strainless complexes显示文摘Susai Rajendran Apparao B V Palaniswamy N 2001Corrosion Science2001,43,:1
4Genetic and phenotypic differences between isolates of Murray Valley encephalitis virus in Western Australia, 1972–2003显示文摘Cheryl A. Johansen Veronica Susai Roy A. Hall John S. Mackenzie David C. Clark Fiona J. May Stéphane Hemmerter David W. Smith Annette K. Broom 2007Virus Genes2007,,:1
5Identification of highly responsive kidney transplant recipients using pretransplant soluble CD30.显示文摘Caner Susai Steffen peizi 0,,:1
6Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells显示文摘SUSAI T KANEKO M NAKATO K 2001Int J Hydrogen Energ2001,26,:1
7Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells显示文摘Susai T Kaneko M Nakato K Isono T 2001International Journal of Hydrogen Energy2001,26,:1
8Synergistic and Antagonistic Effects Existing among Polyacrylamide Phenyl Phosphonate and Zn2+ on the Inhibition of Corrosion of Mild Steel in a Neutral Aqueous Environment显示文摘Susai Rajendran Apparao B V Palaniswamy N 1998J Electrochemica Acta1998,44,:1
9Breakdown enhancement of AlGaN/GaN HEMTs on 4-in silicon by improving the GaN quality on thick buffer layers显示文摘SUSAI L S TAKAAKI S TAKASHI E 2009IEEE Electron Device Letters2009,30,6:1
10Development of a 1 kW polymer electrolyte fuel cell power source显示文摘T Susai 2001Journal of Power Sources2001,,92:1
11Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells显示文摘Susai T Kaneko M Nakato K Isono T Hamada A Miyake Y 2001International Journal of Hydrogen Energy2001,26,:1
12Development of a 1 kW polymer electrolyte fuel cell power source显示文摘SUSAI T 2001Journal of Power Sources2001,92,12:1
13A new and highly effcient asymmetric route to cyclic α-amino phosphonates:The first catalytic enantioselectictive hydrophosphonylation of cyclic imines catalyzed by chiral heterobimetallic lanthanoid complexes显示文摘Groger H Saida Y Susai H 1998J Amer Chem Soc1998,120,:1
14Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells 显示文摘SUSAI T KANEKO M 2001International Journal of Hydrogen Energy2001,,26:1
15指甲花萃取物对镍从瓦特镀液中电沉积的影响(英文)显示文摘采用赫尔槽试验、分散能力测定法、扫描电镜、X射线衍射、能谱分析、硬度测量及交流阻抗谱,研究指甲花萃取物(主要成分为2-羟基-1,4-萘醌)对镍从瓦特镀液中电沉积(以低碳钢为基体)的影响。在温度40~50℃和pH4.5~5.0的条件下,从含60mL/L指甲花萃取物的瓦特镀镍液中得到的镀层具有良好的耐蚀性和硬度。指甲花萃取物作为瓦特镀镍液的添加剂,极大地提高了镀液的分散能力和电流效率。J.Felicita Florence Susai Rajendran K.N.Srinivasan 2012电镀与涂饰2012,31,7:1
16Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells显示文摘 KANEKO M ISONO T 2001International Journal of Hydrogen Energy2001,26,:1
17Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells 显示文摘SUSAI T KANEKO M NAKATO K 2001International Journal of Hydrogen Energy2001,26,:1
18Optimization of proton exchange membranes and the humidifying conditions to improve cell performance for polymer electrolyte fuel cells显示文摘Susai T Kaneko M Nakato K 2001Int J Hydro Energy2001,26,6:1
19Laser Manipulation of Micro Untransmissive Particles in Water显示文摘The laser trapping of untransmissive particles are discussed in this paper. Photon can generate the momentum tothe untransmissive particle by diffraction and reflection on the surface of the particles. We tried laser trapping ofuntransmissive particles using an attractive force caused by the diffraction and radiation force caused by reflection.The laser trapping system includes CW YAG laser, which has 1.064 μm in wave length and an optical microscope.The motions of particles were monitored by a CCD camera on the top of the microscope and recordedby PC connected to the CCD camera.Masahiro OTA Makoto SHIMODA Yuuki SUSAI 2009Journal of Thermal Science2009,18,1:0
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