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For the structural and the morphological characterization, Scanning Electron Microscopy and Thermal Gravimetric Analysis methods were used.
Inhibition behavior of new designed inhibitors for X65 steel in CO2 saturated oilfield formation water containing acetic acid has been investigated by electrochemical measurements, surface characterization, scanning vibrating electrode technique, rotating electrochemical quartz crystal microbalance, and X-ray photoelectron spectroscopy.
Following initial X-ray diffraction (XRD) characterization, scanning electron microscope (SEM), TEM and high-resolution TEM (HRTEM) imaging revealed a specific morphology of spherical shell agglomerates of V2O5 nanorods and nanoribbons, with each shell comprising a network of these one- and two-dimensional nanoparticles in an amorphous carbon matrix.
The properties of this BD-UNCD were studied systematically using resistivity characterization, scanning and transmission electron microscopy, Raman spectroscopy, and roughness measurements.
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Moreover, microstructural characterization using scanning electron microscope and Fourier transform infrared spectroscopy of PC incorporating MWCNTs was performed.
Each sample preparation step was repeated on smooth Au sheets for characterization with scanning electron microscopy (SEM).
Furthermore, a characterization by scanning electron microscopy (SEM) was realized to observe the fibers/matrix bond.
Morphological and thermal characterization by scanning electron microscopy and thermal gravimetric analysis confirmed the modification by urea.
The microstructure and morphology were characterization by scanning electron microscopy (SEM, Zeiss Ultra 55) and transmission electron microscopy (TEM, Zeiss Libra 200FE).
Characterization by scanning electron microscopy revealed a microstructure similar to that of commercially available sintered WC Co.
The characterization by scanning electron microscopy and light scattering indicated that high concentrations of TCS seemingly caused the increase of NP mean size.
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