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Temperature effect on the removal of hydroxyl radical by a polycrystalline platinum surface
G. T. Fujimoto, G. S. Seiwyn, J. T. Keiser,
Ming-Chang Lin
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引文 斯高帕斯(Scopus)
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Keyphrases
Activation Energy
100%
Temperature Effect
100%
Hydroxyl Radical
100%
Platinum Surface
100%
Polycrystalline Platinum
100%
OH Radical
100%
Temperature Range
50%
Desorption
50%
High Coverage
50%
Desorption Process
50%
Flow System
50%
Removal Methods
50%
Flow Condition
50%
Discharge Flow
50%
Laser-induced Fluorescence Method
50%
Microwave Discharge
50%
Catalytic Removal
50%
Pt Surface
50%
Weak Surface
50%
Thermal Desorption
50%
Surface Sites
50%
Low Pressure Discharge
50%
Chemistry
Desorption
100%
Hydroxyl Radical
100%
Anisotropy
100%
Reaction Activation Energy
66%
Fluorescence
33%
Material Science
Platinum
100%
Surface (Surface Science)
100%
Desorption
75%
Activation Energy
50%
Laser Induced Fluorescence
25%
Chemical Engineering
Desorption
100%
Thermal Desorption
50%