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UV-Vis absorption spectrum, Fourier transform infrared spectrum, photoluminescence spectrum, and high-resolution transmission electron microscopy are applied to characterize the physical and chemical properties of the nanocomposites.
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Scanning electron microscopy was applied for endothelial morphologic features.
Atomic force microscopy was applied to characterize the film microhardness and the surface mean roughness.
Subsequently, Brewster angle microscopy was applied to image domains in lipid matrices and lipid protein mixtures.
Atomic force microscopy was applied for top morphology, surface adhesion force and friction force.
Scanning electron microscopy and transmission electron microscopy were applied to characterize the microstructure of the composites.
In this study, atomic force microscopy was applied to characterise the association of CYP2C9 to dimyristoylphosphatidylcholine (DMPC) supported phospholipid bilayers.
X-ray diffractometer and scanning electron microscopy were applied to analyze the microstructure and morphology of both fibers and composites.
Transmission electron microscopy was applied to study the texture and microstructure of the carbon layers.
SEM and epifluorescent microscopy were applied to show the surface of the MAO coatings and distribution of the SRB biofilms.
Alternatively, Raman microscopy was applied to localise the grain components without any need for preceding staining or other sample pretreatment.
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