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Chemical Shifts of Carbonyl Carbons in Peptides and Proteins
Angel C. de Dios,
Eric Oldfield
Chemistry
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peer-review
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Dive into the research topics of 'Chemical Shifts of Carbonyl Carbons in Peptides and Proteins'. Together they form a unique fingerprint.
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Keyphrases
Hydrogen Bonds (H-bonds)
100%
Carbonyl
100%
Chemical Shift
100%
Bond Distance
50%
Formamide
50%
Hydrogen Effect
50%
Geometry Optimization
50%
Dipeptide
50%
Chemical Shift Difference
50%
Protein Modeling
50%
Hydrogen-bonded Systems
50%
Observed Trends
50%
Shift Pattern
50%
N-methylacetamide
50%
Hydrogen Bond Formation
50%
13C NMR Chemical Shift
50%
Carbon 13C
50%
Shielding Tensor
50%
Shielding Calculation
50%
Peptide Model
50%
Gauge-including Atomic Orbitals
50%
Engineering
Good Agreement
100%
Model System
100%
Bond Formation
100%
Geometry Optimization
100%
Experimental Trend
100%
Chemistry
Chemical Shift
100%
Hydrogen Bonding
75%
Hydrogen
25%
Hartree-Fock Calculation
25%
Atomic Orbital
25%
Alanine
25%
Dipeptide
25%
N-Methylacetamide
25%
Formamide
25%
Physics
Chemical Equilibrium
100%
Hydrogen Bond
50%
Self Consistent Field
25%
Earth and Planetary Sciences
Chemical Equilibrium
100%
Hydrogen Bond
50%
Alanine
25%