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Beilstein J. Nanotechnol. 2017, 8, 2069–2082, doi:10.3762/bjnano.8.207
Figure 1: (a) Summary of optical characterization. The transmittance for the different samples is plotted ver...
Figure 2: Summary of mechanical parameters for all samples, obtained using CRFM: (a) thick and (b) thin sampl...
Figure 3: Typical correlated electro-mechanical properties of the thin samples: PEDOT:PSS (a–d), Laponite RD ...
Figure 4: Measurement of virial and dissipated power for the second eigenmode of the cantilever in bimodal AF...
Figure 5: (a) Strain (vertical axis) produced by bimodal AFM in the nanocomposite film for different Laponite...
Figure 6: (a) Schematic illustration of the overall sample structure and the consecutive imaging of C-AFM and...
Figure 7: Transmission probability for a multibarrier system for the energy levels of the PCEO model. Three d...
Figure 8: Electro-mechanical response of the transparent (thin) Laponite RD nanocomposite to the high-pressur...
Beilstein J. Nanotechnol. 2017, 8, 579–589, doi:10.3762/bjnano.8.62
Figure 1: KPFM surface potential measurements of samples cast from DCB and CB. (a) Topography of the sample f...
Figure 2: KPFM measurement of a typical feature in the CB-cast sample. (a) Topography showing no correlation ...
Figure 3: Removal of the surface aggregates in the aged sample. (a) Topography of initial sample. (b) Topogra...
Figure 4: Correlation of the potential and current for normal and defective areas. (a) Topography of a normal...
Figure 5: Finite element analysis and Wentzel–Kramers–Brillouin quantum tunneling calculations of the tip–ele...
Figure 6: Removal of surface aggregates during consecutive bimodal AFM imaging. (a)–(d) Topographies consecut...
Figure 7: Potential and current measurements after removal of the surface aggregates. (a) Potential before th...