CONFORMATIONAL-ANALYSIS OF METHYL-PHENYL-SILOXANE CHAINS

Citation
Jj. Freire et al., CONFORMATIONAL-ANALYSIS OF METHYL-PHENYL-SILOXANE CHAINS, Macromolecules, 29(15), 1996, pp. 5143-5148
Citations number
33
Categorie Soggetti
Polymer Sciences
Journal title
ISSN journal
00249297
Volume
29
Issue
15
Year of publication
1996
Pages
5143 - 5148
Database
ISI
SICI code
0024-9297(1996)29:15<5143:COMC>2.0.ZU;2-N
Abstract
The conformational energy of chain fragments of poly(methylphenylsilox ane) is studied, considering contributions from bond stretching, bond angle bending, bond torsion, and van der Waals interactions. Energy is minimized without constraints, so that minima correspond to fully rel axed conformations. The energy minima of this phenyl-substituted polym er differ notably from those of the parent poly(dimethylsiloxane), due to the importance of the attractive interactions between pairs of phe nyl groups. For two repeat units (diad), the stable conformations occu r when the pair of phenyl rings is coupled parallel, face-to-face. For three repeat units (triad), the stable conformations occur also when a pair of phenyl rings is coupled parallel, face-to-face, but not nece ssarily those in consecutive units. Instead, the chain can coil to cou ple together the phenyl rings of alternate units, leaving uncoupled th e phenyl ring in between. This coiling of the chain to yield a stable conformation is a genuine triad effect that cannot be predicted from t he diad energies. In longer chain sequences, the contribution of this coiled triad conformation is significant.