Title of article
Conformational analysis of cellobiose by electronic structure theories Original Research Article
Author/Authors
Alfred D. French، نويسنده , , Glenn P. Johnson، نويسنده , , Christopher J. Cramer، نويسنده , , G?bor I. Csonka، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2012
Pages
9
From page
68
To page
76
Abstract
Adiabatic ϕ/ψ maps for cellobiose were prepared with B3LYP density functional theory. A mixed basis set was used for minimization, followed with 6-31+G(d) single-point calculations, with and without SMD continuum solvation. Different arrangements of the exocyclic groups (38 starting geometries) were considered for each ϕ/ψ point. The vacuum calculations agreed with earlier computational and experimental results on the preferred gas phase conformation (anti-ϕH, syn-ψH), and the results from the solvated calculations were consistent with the (syn ϕH/ψH conformations from condensed phases (crystals or solutions). Results from related studies were compared, and there is substantial dependence on the solvation model as well as arrangements of exocyclic groups. New stabilizing interactions were revealed by Atoms-In-Molecules theory.
Keywords
Carbohydrate , Aqueous solvation , Conformational analysis , Disaccharide , mapping , cellulose
Journal title
Carbohydrate Research
Serial Year
2012
Journal title
Carbohydrate Research
Record number
967482
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