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Nonadiabatic effects in C-Br bond scission in the photodissociation of bromoacetyl chloride
Rosendo Valero,
Donald G. Truhlar
Chemistry (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
21
Scopus citations
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Dive into the research topics of 'Nonadiabatic effects in C-Br bond scission in the photodissociation of bromoacetyl chloride'. Together they form a unique fingerprint.
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Chemical Compounds
Photodissociation
100%
Electronic State
64%
Excited Singlet State
63%
Potential Energy Surface
55%
Chloride
51%
Potential Energy Hypersurface
43%
Translational Energy
40%
Excited Electronic State
35%
Molecular Beam
35%
Thermochemistry
34%
Reaction Path
31%
Potential Energy
29%
Energy
27%
Excited State
23%
Simulation
18%
Physics & Astronomy
photodissociation
93%
cleavage
90%
chlorides
87%
potential energy
74%
electronics
34%
excitation
32%
thermochemistry
31%
saddle points
24%
molecular beams
22%
energy distribution
19%
methodology
17%
electronic structure
16%
products
14%
energy
12%
matrices
12%
lasers
9%
simulation
8%