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Photodissociation of RNCS and RSCN (R = H, CH
3
, C
2
H
5
) at 248 and 193 nm: CN product energy distributions
F. J. Northrup
*
, Trevor J. Sears
*
Corresponding author for this work
Chemistry
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:
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Article
›
peer-review
16
Scopus citations
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Dive into the research topics of 'Photodissociation of RNCS and RSCN (R = H, CH
3
, C
2
H
5
) at 248 and 193 nm: CN product energy distributions'. Together they form a unique fingerprint.
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Keyphrases
Excited States
100%
Photodissociation
100%
Vibrational Distribution
100%
Energy Distribution
100%
Dissociation
66%
Rotational Distribution
66%
Statistical Distribution
33%
Quantum number
33%
Energy Redistribution
33%
Alkyl
33%
Dissociation Channel
33%
Isomerization
33%
Laser-induced Fluorescence
33%
Rotational Temperature
33%
Internal Mode
33%
Alkyl Substituent
33%
C2H5
33%
Fragmentation Channels
33%
Prior Function
33%
Internal Energy Distribution
33%
Chemistry
Photodissociation
100%
Excited State
100%
Laser Induced Fluorescence Spectroscopy
33%
Isomerization
33%
Internal Energy
33%
Quantum Number
33%
formation
33%
Chlordiazepoxide
33%