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Theoretical investigation of raman optical activity signatures of Tröger's base
V. Liégeois
,
B. Champagne
Unit of theoretical and structural physico-chemistry
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Dive into the research topics of 'Theoretical investigation of raman optical activity signatures of Tröger's base'. Together they form a unique fingerprint.
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Keyphrases
Hydrogen Atom
100%
Raman Optical Activity
100%
Chirality
50%
Raman Active Modes
50%
Carbon Atom
50%
Wave number
50%
Backward Scattering
50%
Atomic Contributions
50%
Coupling Matrix
50%
Point Group
50%
Chiral Nitrogen Atom
50%
C-points
50%
Vibrational Normal Modes
50%
Scattering Intensity
50%
Contribution Patterns
50%
Irreducible Representation
50%
Twisting Motion
50%
INIS
investigations
100%
range
100%
optical activity
100%
atoms
75%
chirality
75%
peaks
50%
spectra
50%
nitrogen
50%
hydrogen
50%
matrices
25%
coupling
25%
carbon
25%
simulation
25%
scattering
25%
motion
25%
irreducible representations
25%
Chemistry
Raman Optical Activity
100%
Hydrogen Atom
100%
Base
100%
Chirality
50%
Carbon Atom
50%
Normal Modes
50%
Nitrogen Atom
50%
Wavenumber
50%
Point Group
50%
Material Science
Chirality
100%
Point Group
100%