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The CNTox sample has the highest amount of surface oxygen.
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The formation of nickel silicates on GO lead to high dispersion of Ni sites and high amount of surface OH groups for elimination of carbon deposition.
The acid-treated catalysts exhibited the relatively high amount of surface Mn4+ along with the probable formation of vacancy defects via the disproportionation of Mn3+ by acid leaching.
From characterization and surface analysis, it can be explained that the presence of higher amount of surface oxides and pyridinic nitrogen is the main reason for better performance towards ORR in alkaline media.
The slowest recovery was observed for spin-coated copolymer film based on PDMS-11000, due to higher amount of surface oxidation and formation of a thicker SiO2 barrier layer.
The higher catalytic activity of Ag/Fe-MnOx was resulted from the synergistic effect between Ag, Fe and MnOx nanostructure, which changed the electronic density of Ag nanoparticles and promoted higher amount of surface adsorbed oxygen as well as easier activation of gaseous O2.
Therefore, the detected high amount of surface carbon originates probably not from in vacuo contamination.
After a longer incubation (>20 min), a considerably higher amount of surface proteins was determined for incubation temperatures below 40 °C.
After longer incubation (20 min), a considerably higher amount of surface proteins was determined for incubation temperatures of 25 and 37 °C.
A broad vibration band at 3449 and 3421 cm−1 are associated with the O H stretching vibration of the adsorbed water molecules indicating higher amount of surface OH [33, 34].
The studies of OH generation on the VO2/CuWO4-NSs under blue light irradiation showed that high amount of surface-generated OH can be transferred to OH−, while photo-excited electrons of the valence band could oxidize organic pollutants in water.
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