Process Development and Material Property of ZnO Nanoparticle Suspension by High Frequency Induction
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概要
- 論文の詳細を見る
The main purpose of this study is to develop a high frequency induction process that is capable of producing the nanoparticle suspension, as well as the investigation into the properties of nanoparticle suspension. Also the effects of the process parameters, such as cooling temperature, vacuum pressure and inert gas on the rheology of nanoparticles are investigated. Experimental results indicate that under lower vacuum pressure, the nanoparticle suspension performs a larger Theological change and produces smaller nanoparticles, whereas under lower cooling temperature, it can produce finer ones. Besides, by adding inert gas during the process, the rheology of nanoparticle suspension would change. Furthermore, by adjusting the pH value of nanoparticle suspension below 7, its surface electric potential can also be increased and subsequently acquires smaller suspension particles. Besides, the nanoparticle suspension produced by this study has a good capability of absorbing UV light.
- 2004-07-15
著者
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Chen Yu
Department Of Radiation Oncology Mackay Memorial Hospital
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Chang Ho
Department Of Electronic Engineering Dankook University
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Chen Yu
Department Of Mechanical Engineering National Taipei University Of Technology
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CHEN Liang
Institute of Automatic Detection, Shanghai Jiaotong University
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LIN Chung
Department of Electrical Engineering, National Sun Yat-sen University
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Chang Ho
Department Of Chemistry Inje University
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Lin Chung
Department Of Material Science Feng Chia University
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LIN Hong
Department of Food Science and Technology, Faculty of Fisheries, Ocean University of Qingdao
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Lin Hong
Department Of Chemistry National Cheng Kung University
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TSUNG Tsing
Department of Mechanical Engineering, National Taipei University of Technology
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Tsung Tsing
Department Of Mechanical Engineering National Taipei University Of Technology
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Chang Ho
Department Of Mechanical Engineering National Taipei University Of Technology
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Chang Ho
Department Of Chemical Engineering And Bio Process Engineering Research Center Korea Advanced Instit
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Chen Liang
Institute Of Automatic Detection Shanghai Jiaotong University
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Lin Hong
Department Of Materials Engineering Tatung University
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Lin Chung
Department Of Chemistry National Cheng Kung University
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Chen Liang
Institute Of Automation Technology National Taipei University Of Technology
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Chen Yu
Department Of Chemistry Graduate School Of Science Osaka University
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Lin Hong
Department Of Applied Chemistry School Of Engineering Nagoya University
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Chen Yu
Department Of Chemical Biology Ernest Mario School Of Pharmacy Rutgers The State University Of New Jersey
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Chen Yu
Department And Graduate School Of Physical Education National Taiwan College Of Physical Education
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