Intramolecular interactions of the functional groups, carboxylic acid, amino, and phenyl in L-phenylalanine have been revealed through inner shell chemical shift. The chemical shift and electronic structures are studied using its derivatives, 2-phenethylamine (PEA) and 3-phenylpropionic acid (PPA), through substitutions of the functional groups on the chiral carbon C-alpha, i.e., carboxylic acid (-COOH) and amino (-NH2) groups. Inner shell ionization spectra of L-phenylalanine are simulated using density functional theory based B3LYP/TZVP and LB94/et-pVQZ models, which achieve excellent agreement with the most recently available synchrotron sourced x-ray photoemission spectroscopy of L-phenylalanine (Elettra, Italy). The present study revea...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The conformational behavior and infrared spectrum of L-phenylalanine were studied by matrix-isolatio...
Despite being intense in the gas phase, the strength of the interaction between a cation and an arom...
L-phenylalanine (L-phe) consists of three different functional groups, i.e., phenyl, carboxyl (-COON...
Intramolecular interactions between fragments of L-phenylalanine, i.e., phenyl and alaninyl, have be...
Conformation-dependent properties of L-phenylalanine in neutral and radical cations have been studie...
The intrinsic conformational preferences of the restricted phenylalanine analogue generated by inclu...
The intrinsic conformational preferences of the restricted phenylalanine analogue generated by inclu...
Peptide segments with phenylalanine residues are commonly found in proteins that are related to neur...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The structure and stability of various conformations of L-phenylalanine (PheN) and its zwitterions (...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The conformational behavior and infrared spectrum of L-phenylalanine were studied by matrix-isolatio...
Despite being intense in the gas phase, the strength of the interaction between a cation and an arom...
L-phenylalanine (L-phe) consists of three different functional groups, i.e., phenyl, carboxyl (-COON...
Intramolecular interactions between fragments of L-phenylalanine, i.e., phenyl and alaninyl, have be...
Conformation-dependent properties of L-phenylalanine in neutral and radical cations have been studie...
The intrinsic conformational preferences of the restricted phenylalanine analogue generated by inclu...
The intrinsic conformational preferences of the restricted phenylalanine analogue generated by inclu...
Peptide segments with phenylalanine residues are commonly found in proteins that are related to neur...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The structure and stability of various conformations of L-phenylalanine (PheN) and its zwitterions (...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The issue of the influence of the side chain/backbone interaction on the local conformational prefer...
The conformational behavior and infrared spectrum of L-phenylalanine were studied by matrix-isolatio...
Despite being intense in the gas phase, the strength of the interaction between a cation and an arom...