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The functionalized nanotube samples, soluble in common organic solvents, were characterized by using optical absorption, Raman, and several microscopy techniques.
After the dispersion and ultrasonication of each inorganic starting material in about 30 common solvents with varying surface tensions and adsoption properties, it was demonstrated that the best solvents have a surface tension close to 40 mJ m−2 by using optical absorption spectroscopy.
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Optical properties were measured using Optical Absorption Photospectrometry (OAP).
Optical band gap, Urbach energy and the nature of transition are also determined using optical absorption spectra.
Certain bands of wavelengths are selected by using optical filters (as seen in Figure 5a), specifically chosen to match the peak absorption (filter A) and background absorption (filter B) when measuring MMC.
Its high axial resolution (2 μm) permits to probe samples with a resolution depending on the zirconia optical properties (absorption and scattering) by using optically conjugate pinhole diaphragms [ 14].
The determination of the optical parameters, which are defined by the absorption coefficient (μ a), the scattering coefficient (μ s), the refraction index (n) and the anisotropy factor (g), is of vital importance for the characterization of biological tissues using optical methods.
Using photolabile O2 and NO carriers, we find by using time-resolved optical absorption spectroscopy that the rates of O2 and NO binding are not significantly affected in the Tt ba3 G232V mutant.
The spectra were then rigorously analysed at the incipient absorption region using the optical absorption edge energy (AEE) values.
When a single optical wavelength is used, the optical absorption, which is related to tumour angiogenesis, can be measured.
Photo-induced electron transfer (PET) and its pH-dependent optical changes were investigated and various photochemical parameters were determined by using pH-dependent absorption and fluorescence spectroscopies.
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