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Beilstein J. Nanotechnol. 2014, 5, 438–446, doi:10.3762/bjnano.5.51
Figure 1: (a) XRD patterns, (b) Raman spectra, (c) TEM image, (d) HRTEM image and (e) SAED pattern of CZTS na...
Figure 2: XPS spectra of CZTS nanocrystals synthesized at 240 °C for 24 h.
Figure 3: (a) XRD patterns and (b) Raman spectra of the hydrothermal products synthesized with different TGA ...
Figure 4: TEM images of CZTS nanocrystals synthesized using (a) 0, (b) 18 and (c) 180 μL of TGA at 240 °C for...
Figure 5: (a) XRD of the precipitate collected from the precursor solution prior to hydrothermal reaction and...
Figure 6: TEM images of (a, b, c) Cu7S4 and Cu1.8S nanocrystals collected prior to hydrothermal reaction and ...
Figure 7: XRD pattern of the precipitate collected from the precursor solution without TGA prior to hydrother...
Figure 8: Schematic illustrations of the formation process for kesterite CZTS nanoparticles.
Figure 9: UV–visible absorption spectra of the CZTS nanocrystals synthesized at different reaction duration a...
Beilstein J. Nanotechnol. 2012, 3, 378–387, doi:10.3762/bjnano.3.44
Figure 1: Images of TiO2 particles by SEM (a) and by TEM (b, c) as well as XRD pattern of the TiO2 particles ...
Figure 2: J–V characteristics of the dye-sensitized solar cells made from paste A containing 13 wt % TiO2 sph...
Figure 3: Equivalent circuit (a) and the Nyquist plot (b) and Bode plot (c) of the impedance spectrum of a dy...
Figure 4: Comparison of the effective electron lifetime, τn, (a) and effective electron diffusion coefficient...
Figure 5: Comparison of dye-sensitized solar cells based on hierarchically structured TiO2 spheres with and w...