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Beilstein J. Nanotechnol. 2019, 10, 725–734, doi:10.3762/bjnano.10.72
Figure 1: SERS spectra of 10−4 M 4-MPBA (inset) after immersion in H2O for different VLS process temperatures....
Figure 2: SERS intensities of the 1073 and 1574 cm−1 bands before (denoted EtOH) and after H2O washing for di...
Figure 3: SEM images of horizontally in-plane randomly oriented SiNWs after different Ag sputtering times.
Figure 4: SEM images of dry samples in comparison with the one after immersion in EtOH and water for two diff...
Figure 5: SEM images of SiNWs obtained through VLS deposition at 500 °C, then sputtered Ag for 3 min and fina...
Figure 6: Average SERS values of 4-MPBA for different SiNW thicknesses after H2O immersion.
Figure 7: SERS enhancement after immersion in water.
Figure 8: Fractal dimension (D) of Ag-plated SiNWs after immersion in EtOH and H2O.
Figure 9: Lacunarity at 532 nm for different SiNWs thicknesses.
Figure 10: Comparison of the commercial SERS substrates and the synthetized sample (RBI) after the immersion i...
Figure 11: Intensity at 1073 cm−1 for the samples fabricated in different labs.
Beilstein J. Nanotechnol. 2017, 8, 2026–2031, doi:10.3762/bjnano.8.203
Figure 1: Optical stereomicroscope images (30× magnification) of PC composite films at different MWCNT loadin...
Figure 2: UV–vis absorbance of composite samples with different MWCNT loading.
Figure 3: a) FTIR absorption spectrum of the PC/MWCNT composite films at different loadings (inset: structure...
Figure 4: Raman spectra of PC/MWCNT composite films at different MWCNT loadings.
Figure 5: TGA/DTG and DTA analysis of the PC/MWCNT films at 1 wt % loading under N2 flow. The inset in the lo...
Figure 6: DSC profile of the PC/MWCNT film at 1 wt % loading.