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Doped fullerenes resonances

Photoionization of doped fullerene anions Coulomb confinement resonances 38... [Pg.13]

The present paper has focused on novel systems, doped fullerenes, with the emphasis on their photoionization spectra. While the photoionization problem of gas phase doped fullerenes has been experimentally addressed only recently in pioneering works [12,13], there has been much more activity on the theoretical side of the problem this has far outstripped experiment. In the present paper, only those results obtained on the basis of simple semiem-pirical models, the A-potential [15,20-22,27-33,43,44] and 5-potential [34-41] models have been highlighted. Surprisingly, even within the framework of these simple models a rich variety of novel effects, particularly the confinement resonances and their manifestations in the photoionization spectra of doped fullerenes has been unraveled. Although the approximations made are indisputably reasonable for trusting the existence of, and trends in, the predicted confinement resonances, and thereby urging their experimental... [Pg.65]

The Raman spectra of DWCNT s were analysed in terms of chiral, (n,m) assignments for these tubes.266 The Raman spectrum of I2-doped DWCNT gave assignments to radial breathing and tangential modes.267 Resonance Raman spectra of DWCNT were analysed to probe diameters and chiralities.268 The Raman spectra of DWCNT (from fullerene peapods annealed at high temperatures) show that the inner tubes are remarkably defect-free.269 Very low levels of defects were also observed from the Raman spectra of DWCNT produced by the catalytic decomposition of benzene over Fe-Mo/ A1203 catalysts at 900°C (i.e. very weak D-band at 1265.5 cm-1).270... [Pg.211]

The amino-modified MCM-41 (Lee, 2002) doped with Ceo have been employed to study by electronic paramagnetic resonance (EPR) the free radical reactions of fullerenes in... [Pg.1683]

M.F. Xu, X.Z. Zhu, X.B Shi, J. Liang, Y. Jin, Z.K. Wang, L.S. Liao, Plasmon resonance enhanced optical absorption in inverted polymer/fullerene solar cells with metal nanoparticle-doped solution-processable Ti02 layer, ACS Appl. Mater. Interfaces 5 (2013) 2935-2942. [Pg.142]


See other pages where Doped fullerenes resonances is mentioned: [Pg.24]    [Pg.25]    [Pg.32]    [Pg.32]    [Pg.41]    [Pg.43]    [Pg.66]    [Pg.129]    [Pg.47]    [Pg.410]    [Pg.423]    [Pg.374]    [Pg.506]    [Pg.122]    [Pg.915]    [Pg.367]    [Pg.374]   
See also in sourсe #XX -- [ Pg.50 , Pg.51 , Pg.52 ]




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Doped fullerenes

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