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The maximum absorption value of the TiO2/RGO/Fe2O3 composites is −44.05 dB at 14.48 GHz with a low thickness of 2.0 mm.
As shown in Figure 4 and Table 1, 5P-VA film showed maximum absorption value at 363 nm as well as PLmax value at 460 nm.
Figure 5a shows that the maximum absorption value of Ni/(C, silicides) nanocapsules with a thickness of 2 mm is −37.8 dB at 13.8 GHz, while the value of Ni/C nanocapsules is −12.9 dB at 15.6 GHz for the same thickness (Figure 5b).
A maximum absorption value of −34.0 dB as well as 14.3 GHz qualified bandwidth with reflection loss below −10 dB is achieved for the GF with an ultralow bulk density of 1.6 mg/cm3, of which the average absorption intensity and the specific MA efficiency are much higher than those of the best available MA materials in previous literature.
In the scatterplots of all the 5 patients, the maximum absorption value at 690 nm was observed in the areola and the maximum fluorescence value in both the lesion and areola.
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The maximum absorption values at these wavelengths (λmax) were obtained after 85 and 30 min of incubation for DH-AgNps and DH-AuNps, respectively.
In Figure 3 and Table 1, 5P-VA had the longest maximum absorption and PL values of 327 and 400 nm, and 5P-VTPA and 5P-DVTPA had the longest maximum absorption values of 367 and 364 nm, and PL maximum (PLmax) values of 446 and 447 nm, respectively.
Photodecomposition quantum yields, Φ, were calculated according to Eq. (1), and the result shown in Table 1 > -wrap-foot> is the average of ten pairs of adjacent maximum absorption values.
This study demonstrated that effective radar absorbing MWCNT/epoxy nanocomposites having small matching thicknesses of 2 3 mm and very low filler contents of 0.25-0.5 wt%, with microwave energy absorption in the X-band region above 90% and maximum absorption peak values above 97%, could be obtained via simple processing methods, which is promising for mass production in industrial applications.
To calculate the association constant of the "DWCNT-intercalate" complex formed, the modified Benes-Hilderbrand method [18] that accounts the data on the maximum DWCNT absorption values at various intercalate concentrations in the UV-spectrum was employed.
To calculate the association constant of the "silicene-intercalate" complex formed, the modified Benes-Hilderbrand method [15] that accounts the data on maximum silicene absorption values at various intercalate concentrations in the UV-spectra was employed.
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