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A plethora of different structural (Powder XRD), microstructural (HR-TEM), morphological (surface area, CO chemisorption) and thermal analysis characterization techniques were used to evidence the modification of the samples induced by prolonged exposure to the reaction mixture.
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The influence of oxidants like ammonium per sulfate (APS), ferric chloride (FC) and potassium dichromate (PDC) on structural, morphological, surface areas and electrochemical properties of ppy thin films is examined.
The structural, BET surface area, morphological, photocatalytic activity under ultraviolet (UV) light and antibacterial performance was investigated with varying MW irradiation time.
Using these digital pictures, the flight morphological traits, forewing surface area (mm), hindwing surface area (mm), forewing length (mm) and forewing melanization, were measured using the image analysing software Image J 1.38x (freely available at http://rsb.info.nih.gov/ij/).
These results indicate a fundamentally different behavior of copper compared to the zinc experimental results: as chloride concentration increases, characteristics of the individual nanoparticle aggregates, such as morphological, structural, surface charge, and surface area differences have a noticeable effect on copper retention.
Most importantly density variation of OH did not affect the morphological parameters such as surface area, pore size and distribution.
Figure 5b shows an SEM image of the solid product from 24-h reaction at 250 °C, where the effect of morphological change on the surface area due to the oxidation of aluminum is evident, confirming that hydrogen production reaction had been occurred.
This morphological difference increases the surface area of the mouse small intestine and has been suggested as a compensation mechanism for the lack of mucosal folds in the mouse intestine.
Genetic variation is investigated by haplotype identity using DNA sequences from both mycobionts and photobionts, this data will be correlated with measurements of morphological traits such as surface area and thallus thickness, and also related to CO2-exchange data.
The morphological features, specific surface areas and morphology dependent electrochemical activity of the as-prepared electrode materials have been investigated systematically.
The structural and morphological properties were characterized by XRD, SEM, TEM, and XPS, which demonstrated that the AgNO3 amount during the fabrication process significantly affected the surface, size distribution, morphology, and specific surface area of the as-grown Ag/Cu2O composites.
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