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Confined rapid thermolysis/FTIR spectroscopy of hydroxylammonium nitrate
H. S. Lee, S. T. Thynell
Mechanical Engineering
Materials Research Institute (MRI)
Research output
:
Contribution to conference
›
Paper
›
peer-review
8
Scopus citations
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Dive into the research topics of 'Confined rapid thermolysis/FTIR spectroscopy of hydroxylammonium nitrate'. Together they form a unique fingerprint.
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Keyphrases
FTIR Spectroscopy
100%
Thermolysis
100%
Hydroxylammonium Nitrate
100%
Nitric Acid
25%
Subsequent Reactions
25%
Water Mixtures
25%
Condensed Phase
25%
Temperature Range
12%
Atmospheric Pressure
12%
Gas Phase
12%
Proton Transfer
12%
Reactive Species
12%
Species Evolution
12%
Nitrogen Environment
12%
Solution State
12%
Decomposition Characteristics
12%
Engineering
Temperature Range
100%
Gas-Phase
100%
Isothermal
100%
Solution State
100%
Atmospheric Pressure
100%
Chemistry
Condensed Phase
100%
Nitrous Oxide
100%
Nitrogen Dioxide
50%
Pool
50%
Proton Transfer
50%
Spectroscopy
50%
Material Science
Fourier Transform Infrared Spectroscopy
100%
Pitting Corrosion
100%
Nitrogen Dioxide
100%
Chemical Engineering
Nitrate
100%