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Hydrogen bonding between aromatics and cationic amino groups
Harold Basch
, Walter J. Stevens
National Institute of Standards and Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
46
Scopus citations
Overview
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Keyphrases
Binding Energy
100%
Amino Group
100%
Aromatics
100%
Hydrogen Bond (H-bond)
100%
Benzene
50%
Aromatic Ring
33%
Geometry Optimization
33%
Energy Component
33%
1-methylindole
33%
Phenylalanine
16%
Structural Stability
16%
Toluene
16%
Charge Transfer
16%
Conformational Stability
16%
Catalytic Activity
16%
Biological Systems
16%
Binding Site
16%
Tryptophan
16%
Tyrosine
16%
Variational
16%
Single Point
16%
Ammonium
16%
Ammonium Ion
16%
Complex Geometry
16%
Potassium Ion
16%
Hartree-Fock
16%
Ammonium Cation
16%
Aromatic Systems
16%
Cation Species
16%
Polarization Transfer
16%
Exchange Repulsion
16%
Ring Complex
16%
Generic Structure
16%
Electronegative Atoms
16%
Amino Acid Side Chain
16%
Chemistry
Amino Group
100%
Hydrogen Bonding
100%
Binding Energy
100%
Benzene
50%
Aromatic Structure
33%
Møller-Plesset Perturbation Theory
33%
Ammonium
33%
Methylindole
33%
Cation
33%
Binding Site
16%
Nitrogen
16%
Electrostatic Force
16%
Toluene
16%
Amino Acid
16%
Tryptophan
16%
Catalyst Activity
16%
Potassium Ion
16%
Oxygen Atom
16%
Tyrosine
16%
Phenylalanine
16%