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Beilstein J. Nanotechnol. 2015, 6, 1708–1711, doi:10.3762/bjnano.6.174
Beilstein J. Nanotechnol. 2015, 6, 1138–1144, doi:10.3762/bjnano.6.115
Figure 1: PL quantum yields and photoconductivity data of PPV/SWNT composite films converted at Tc = 573 K. (...
Figure 2: DFT calculations of triphenyl PPV-nanotube interaction. (a) metallic (4,4) nanotube, (b) semiconduc...
Figure 3: Wavefunction isosurface plots of HOMO and LUMO states for (a,b) (4,4) and (c,d) (7,0) carbon nanotu...
Figure 4: (a) Time-resolved PL spectra of PPV/SWNT composite films for an exciting energy Eexc = 3.1 eV and f...
Figure 5: Left side: steady-state PL of PPV/SWNT composite films for different SWNT mass percentages x. Right...
Beilstein J. Nanotechnol. 2012, 3, 789–797, doi:10.3762/bjnano.3.88
Figure 1: TEM image of sodium titanate nanotubes (a) typical region used to record the NEXAFS–TXM data. (b) H...
Figure 2: (a) X-ray images at different photon energies E from an image stack recorded on the (Na,H)TiNTs at ...
Figure 3: NEXAFS spectra at the Ti L-edge recorded on (1) SrTiO3, (2) (Na,H)TiNTs and (3) anatase. The vertic...
Figure 4: (a) Calculated NEXAFS spectra. Ti atoms at different sites of the (Na,H)TiNTs structure (Figure 4b). (b) Bal...
Figure 5: Comparison of NEXAFS spectra calculated by using density functional theory (red) and O K-edge spect...
Figure 6: (a) Contribution to the O K-edge spectrum of oxygen atoms at different sites of the (Na,H)TiNTs str...