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Beilstein J. Nanotechnol. 2019, 10, 2329–2337, doi:10.3762/bjnano.10.223
Figure 1: Fabrication of SU-8 films and differentiation of L929 cells cultured on the surfaces. (a) The fabri...
Figure 2: AFAM characterization of the SU-8 film surfaces. Morphological images (a–e) and acoustic images (h–...
Figure 3: Comparison of the growth of the L929 cells on the SU-8 substrates of varying stiffness and on the r...
Figure 4: Fluorescence micrograph of the L929 cells cultured on the topography substrate (developed SU-8 surf...
Figure 5: AFAM images of the L929 cells cultured for 48 h on the patterned stiffness substrate (a, d), on the...
Figure 6: The alignment rate (alignment %) and the elongation factor of the L929 cells cultured on the develo...
Beilstein J. Nanotechnol. 2019, 10, 1726–1736, doi:10.3762/bjnano.10.168
Figure 1: Schematic illustration of a Li/S battery with a TiO2/GO-coated functional separator.
Figure 2: (a) XRD patterns of the as-spun and as-dealloyed Ti10Al90 alloy foils. (b) Raman spectra of TiO2, G...
Figure 3: (a) SEM image, (b) element maps and (c) TEM image of the as-prepared nanoporous TiO2 particles. (d)...
Figure 4: Surface SEM images of (a) a pristine separator, (b) a TiO2/GO-coated separator and (c) the TiO2/GO-...
Figure 5: CV curves of the Li/S batteries with a (a) pristine separator, (b) GO-coated separator and (c) TiO2...
Figure 6: (a) Cyclic performance and coulombic efficiency of the Li/S batteries with pristine, GO-coated and ...
Figure 7: (a) Rate capability of the Li/S batteries with pristine, GO-coated and TiO2/GO-coated separators. (...
Figure 8: Nyquist plots of the Li/S batteries with pristine, GO-coated and TiO2/GO-coated separators (a) befo...
Figure 9: Optical images of the diffusion process of the polysulfides through the (a) pristine separator and ...
Figure 10: (a) Raman and (b) FTIR spectra of the Li2S6-treated TiO2/GO composite.
Figure 11: XPS spectra (Ti 2p) of the battery with a TiO2/GO-coated separator before and after charge/discharg...