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Furthermore, the coatings were characterized concerning their corrosion performance on AZ91 substrates.
Both modified silk proteins were processed into films, and thereafter characterized concerning secondary structure, water contact angle and surface roughness.
NFAP2 was characterized concerning its phylogenetic relationship with the other ascomycetous cysteine-rich antifungal proteins, antifungal effect, thermal stability, and structure.
The produced ingots were characterized concerning their microstructures and final composition, which allows estimating the incorporation efficiency of the alloying elements using this processing route.
The samples were characterized concerning surface roughness, chemical composition profile by Glow Discharge Optical Emission Spectroscopy (GDOES), hardness profile, coating thickness, coating adhesion, present phases and residual stresses.
The resulting copolymer membranes were characterized concerning the content of residual CC double bonds and sol as well as their thermo-mechanical and electroanalytical properties.
The coatings were characterized concerning their mechanical properties by means of nano indenter hardness measurements (all coatings) and ball on disk tribometry (Al2O3, 3YSZ).
The obtained specimens were characterized concerning their microstructure and composition using a Hitachi 3200-N scanning electron microscope (SEM) operated at 20 kV and equipped with an electron dispersive spectrometer (EDS, Noran Ltd).
The resulting hydrogel formulations containing P407, PEG-DA (Mn = 700 g mol−1) and the photoinitiator 1-[4- 2-hydroxyethoxy phenyl]-2-hydroxy-2-methyl-1-propan-1-one (Irgacure 2959) were characterized concerning their physical and chemical gelling behavior.
The nanocomposite films have been characterized concerning their composition, morphology and structure, crystallinity, and their bonding environment by means of scanning electron microscopy, X-ray diffrandion, and X-ray photoelectron spectroscopy.
In a follow-up study, these liposomes were further characterized concerning morphology and relaxivity [ 51].
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