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Characterizations such as FTIR, SEM, MIP and flow permeability of ceramic candles were performed.
Characterizations such as TPR, XRD, TEM, XANES, EXAFS, CO adsorption were performed.
All these conclusions were confirmed by various characterizations, such as SEM, TEM, AFM, IR, TGA, XRD etc.
Other related characterizations, such as IR and Far IR, could also prove the interaction of Au NPs and S1.
Surface characterizations such as morphology, present phases, roughness and hardness were evaluated by SEM, EDS, XRD, profilometry and microhardness tests.
Further characterizations such as high-resolution transmission electron microscopy and X-ray diffraction indicated the changes in crystallization and phase transformation under the influence of surfactants.
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Single-cell-mechanical-property characterization, such as stiffness and elasticity, is another example that benefits from micro-nanorobotic manipulation system.
RIVeR processes large-scale water-surface characterization such as velocity fields or individual trajectories of floating tracers.
Optoelectronic characterization such as photoluminescence [5, 6] optoelectronic memory effect [7], and photovoltaic response [8 16] suggest that nanotubes act as electron donors to the polymer host.
Even if this result is not accurate as standard pore characterization (such as gas adsorption or thermo-porometry), it clearly confirms a minor variation in pore dimensions.
Traditional methods of lipid characterization such as thin layer chromatography (TLC), gas chromatography (GC), nuclear magnetic resonance spectroscopy (NMR) were limited by lack of sensitivity and accuracy [1].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com