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Helical conformation alkyl polysilanes

An LCAO (linear combination of atomic orbitals) local-density functional approach was used to calculate the band structures of a series of polymer chain conformations unsubstituted polysilane in the all-trans conformation and in a 411 helical conformation, and all-trans poly(dimethylsilane). Calculated absorption spectra predict a highly anisotropic absorption for the all-trans conformation of polysilane, with the threshold absorption peak arising strictly from polarizations parallel to the chain axis. The absorption spectrum for the helical conformation is much more isotropic. Results for the dimethyl-substituted polysilane chain suggest that the states immediately surrounding the Fermi level retain their silicon-backbone a character upon alkyl-group substitution, although the band gap decreases by I eV because of contributions from alkyl substituent states both below the valence band and above the conduction band to the frontier states. [Pg.543]

The local-density functional approach was used to compare the band structures of the sW-trans conformation of unsubstituted polysilane with a 4/1 helical conformation and with an dll-trans conformation of dimethyl-substituted poly silane. In line with previous theoretical studies, the electronic wave functions in the vicinity of the Fermi level are primarily silicon-back-bone states, with the major effect of methyl substitution being a decrease in the gap. The predicted absorption spectra for the dll-trans conformations of unsubstituted and dimethyl-substituted polysilane are similar for nearthreshold absorption. Given this similarity, we believe that the shift in energy and strong anisotropy of threshold absorption that we predict for the two extremes of the dll-trans conformation and the dll-gauche model will also occur in alkyl-substituted systems, which are currently under investigation. [Pg.549]

By introducing p- and y-branched chiral alkyl moieties on Si atoms, the corresponding poly(dialkylsilane)s become optically active due to the adoption of a thermally stable and thermoresponsive 7/3 helical conformation in organic solvents. When p- and y-branched achiral dialkyldichlorosilanes are used, the resulting polysilanes adopt optically inactive 7/3 helical conformation due... [Pg.293]


See other pages where Helical conformation alkyl polysilanes is mentioned: [Pg.49]    [Pg.239]    [Pg.605]    [Pg.610]    [Pg.160]    [Pg.250]    [Pg.1230]    [Pg.43]    [Pg.292]    [Pg.98]    [Pg.259]    [Pg.609]    [Pg.614]    [Pg.225]    [Pg.278]   


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Helical conformation

Helical conformation alkyl polysilane

Helical conformation alkyl polysilane

Helical conformation polysilanes

Helical polysilanes

Polysilane

Polysilane conformation

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