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Beilstein J. Nanotechnol. 2018, 9, 2087â2096, doi:10.3762/bjnano.9.197
Figure 1: (aâc) Schematic representation of the TiO2/P3HT-COOH HHJ preparation. (d) 2 Ă 2 ”m2 TM-AFM height i...
Figure 2: (a) 500 Ă 500 nm2 AFM height image of a nanostructured TiO2 film, obtained in UHV. Height detection...
Figure 3: (a) AFM height image obtained in UHV over a 4000 Ă 270 nm2 scan area astride the step edge between ...
Figure 4: Schematic representation of the electronic band structure of the [TiO2/P3HT-COOH]â[tip] system, in ...
Figure 5: (a) 400 Ă 400 nm2 AFM height image obtained in air on a TiO2/P3HT-COOH HHJ. KPFM height detection p...
Figure 6: 5 à 5 ”m2 (a,b) and 500 à 500 nm2 (c,d) PC-AFM height and photocurrent images of a TiO2/P3HT-COOH H...
Beilstein J. Nanotechnol. 2018, 9, 1834â1843, doi:10.3762/bjnano.9.175
Figure 1: FMI-KPFM working principle: Averaged time-integral values of the instantaneous photovoltage are acq...
Figure 2: SPECTY working principle: (a) SPV built-up and decay are modeled using Equation 1 and Equation 2 respectively. (b) A qu...
Figure 3: SPECTYâs algorithm flowchart. When a quasi-steady-state condition is reached, the average value of ...
Figure 4: Comparison between spectroscopy curve obtained through the mathematical fit, measured data points a...
Figure 5: Simulated SPV as a function of the time for different excitation modulation frequencies, the red li...
Figure 6: Simulated SPVAV as a function of the number of excitation cycles for different excitation modulatio...
Figure 7: Simulated surface photovoltage spectroscopy curves of the F5BnPA region for different SPV built-up ...
Figure 8: Time-averaged surface photovoltage measured at different modulating frequencies with intensity-modu...
Figure 9: Data obtained from the implementation of the proposed FMI-KPFM protocol for the simultaneous acquis...
Figure 10: Comparison between curves: Mathematical fit (red and green lines) and simulated SPVAV curve (blue l...