Title
Conformational processes in l-alanine studied using dual space analysis
Abstract
Binding energy spectra and orbital momentum distributions of the two most stable conformers of L-alanine are investigated. Molecular properties such as geometry and dipole moments agree well with available experimental and previous theoretical investigations. Dual space analysis is employed to study the binding energy spectra in coordinate space based on B3LYP/TZVP density functional calculations, and the valence orbital momentum distributions based on the plane wave impulse approximation. In the valence space, the HOMO (24a), NHOMO (23a) and orbitals 22a and 18a are selected to study the conformational processes in L-alanine.
Year
DOI
Venue
2006
10.1007/11758532_13
International Conference on Computational Science (3)
Keywords
Field
DocType
tzvp density,valence space,conformational process,dual space analysis,binding energy spectrum,orbital momentum distribution,molecular property,valence orbital momentum distribution,functional calculation,dipole moment,binding energy,dual space
Valence (chemistry),Discrete mathematics,Molecular physics,Binding energy,Conformational isomerism,Computer science,Dual space,Atomic orbital,Coordinate space,Momentum,Dipole
Conference
Volume
ISSN
ISBN
3993
0302-9743
3-540-34383-0
Citations 
PageRank 
References 
0
0.34
2
Authors
2
Name
Order
Citations
PageRank
Chantal T. Falzon111.12
Feng Wang2387.16