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With increase of Ni content, the surface area and pore volume of the composites decrease.
With the increasing of dendritic polyester polyol content, the surface fracture of the cured epoxy turns to more ductile.
The BET surface area and pore volumes show the expected decreases with increasing zirconia content: the surface areas decrease from 482 to 343 m2/g and the pore volumes de-crease from 1.343 to 0.4290 cm3/g.
With increasing ODMS content, the surface tension decreases dramatically, approaches the value of pure ODMS around 20 wt% ODMS, and then decreases very gradual, exhibiting a little sharp decrease to reach the value of pure component.
It is observed that with increasing PFO content, the surface energy of the simulated coating surfaces significantly reduces due to the surface aggregation of fluorine based entities, and this reflects directly in a visible and desirable increase in contact angles of oil and water.
In addition, for Pt x Co/C NPs with low Co content, the surface relaxation is mild due to the relatively weak surface strain.
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The reaction rate coefficients normalized to the specific surface areas have a maximum at Sn contents between 0.7 and 5 wt.% in the SnCl4 series, in which the Sn doping has an effect of remarkable "onset" of activity, then it is only weakly dependent on the actual Sn content: the surface-area normalized rate coefficients increased 25 times with respect to the pure titania.
Increasing Zr content and decreasing Al content in the surface films could enhance the corrosion resistance of those Zr-based amorphous alloy in chloride medium [12].
Hydrothermal electrochemical treatment was effective to form a porous surface layer by increasing the Ti content and decreasing the Cu content in the surface.
Under plasma treatment, the oxygen content of the surface is found to increase and fluorine content to decrease.
Adsorption amounts acquired from adsorption kinetics are inversely proportional to the Ti content since the surface areas of the composite materials decreased with increasing Ti content.
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