Keyphrases
Porphyrin
100%
Heme Proteins
100%
Polar Interactions
100%
Steric Effect
100%
Back-bonding
100%
Heme Models
100%
Polar Effect
100%
Benzene
50%
FEniCS
50%
Resonance Raman
50%
Bending Mode
50%
FeCo
33%
Close Contact
33%
Raman Bands
33%
Tetrakis
33%
Distal Histidine
33%
Vibrational Frequencies
33%
Methylene Group
33%
Linker
16%
Excited States
16%
Neutron Diffraction
16%
Axial Ligand
16%
Myoglobin
16%
Polypeptide
16%
X-ray Crystal Structure
16%
Energy Cost
16%
Crystal Form
16%
Compress
16%
Esters
16%
Amides
16%
Carboxylate
16%
4-fold
16%
Small Parts
16%
Overall Energy
16%
Phenyl
16%
Fe(II)
16%
O Atom
16%
Hydroxyl Group
16%
Overtone
16%
X-ray Structure Determination
16%
Ether
16%
Resonance Raman Spectra
16%
Amide Group
16%
Binding Pocket
16%
Neutron Structure
16%
Tautomers
16%
Enhancement Pattern
16%
Dominant Effect
16%
Conformational Flexibility
16%
Raman Enhancement
16%
Lone Pair
16%
Vibrational Analysis
16%
Frequency Variation
16%
Imidazole
16%
Vibrational Resonance
16%
P-hydroxyphenyl
16%
Polar Environment
16%
IR Frequencies
16%
Picket Fence Porphyrin
16%
Steric Force
16%
Histidine tautomerism
16%
Pickets
16%
Transition Metal Carbonyls
16%
Chemistry
Steric Effect
100%
Hemoprotein
100%
Porphyrin
100%
Polar Effect
100%
Chlordiazepoxide
100%
Benzene
42%
Crystal Structure
28%
Vibrational Frequency
28%
Methylene Group
28%
Raman Band
28%
Tautomer
28%
Histidine
28%
Ground State
14%
Amide
14%
Crystal Morphology
14%
Neutron Diffraction
14%
Hydroxyl Group
14%
Resonance Raman Spectrum
14%
X-Ray Diffraction
14%
Energetics
14%
Metal Carbonyl
14%
Carboxamide
14%
Excited State
14%
Donor
14%
Imidazole
14%
Transition Metal
14%
electronics
14%
Polypeptide
14%
Carboxylic Acid
14%
Myoglobin
14%
Engineering
Raman Band
100%
Steric Effect
100%
Crystal Structure
100%
Form Crystal
50%
Energetics
50%
Excited State
50%
Harmonics
50%
Ground State
50%
Raman Spectra
50%
Material Science
Crystal Structure
100%
Histidine
100%
Heme Protein
100%
Transition Metal
50%
Neutron Diffraction
50%
X-Ray Diffraction
50%
Myoglobin
50%