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Generation of ZnO nanoparticles by chemical vapor synthesis using quenching air
Feng Jia, Yu Ling Shih, David Y.H. Pui, Zi Yi Li,
Chuen-Jinn Tsai
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環境工程研究所
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引文 斯高帕斯(Scopus)
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Mathematics
Zinc Oxide
100%
Nanoparticles
84%
Quenching
76%
Synthesis
51%
Furnace
45%
Flow Rate
41%
Oxidation
18%
Gas Flow
16%
Metal Nanoparticles
13%
Testing
9%
Convection-diffusion
7%
Geometric mean
7%
Manufacturing
7%
Reaction-diffusion
7%
Medicine
6%
Industry
6%
Experimental Results
6%
Demand
6%
Isometric
6%
Fluctuations
6%
Gas
5%
Life
5%
Graphics
5%
Physics & Astronomy
zinc oxides
49%
quenching
46%
vapors
43%
synthesis
41%
nanoparticles
38%
air
34%
furnaces
28%
flow velocity
25%
air flow
21%
gas flow
11%
oxidation
9%
metal particles
7%
temperature
7%
medicine
6%
convection
5%
industries
5%
manufacturing
5%
gases
3%
Engineering & Materials Science
ZnO nanoparticles
90%
Quenching
59%
Vapors
51%
Furnaces
31%
Air
31%
Flow rate
27%
Flow of gases
13%
Oxidation
12%
Temperature
11%
Testing
7%
Medicine
7%
Convection
7%
Nanoparticles
7%
Metals
4%
Gases
4%
Industry
3%
Chemical Compounds
Zinc Oxide Nanoparticle
69%
Nanoparticle
28%
Flow Kinetics
27%
Rate-Controlling Step
9%
Oxidation Reaction
6%
Reaction Yield
5%
Industry
5%
Gas
3%
Metal
3%
Application
2%