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The hydrogen content and internal stress of the film decrease dramatically with the substrate pulse bias voltage increase.
EIS measurements under open circuit conditions confirmed that the passivity of the film decrease with increase in either Cl− or SO42− concentration.
Mott-Schottky analyses showed that with increasing film formation potentials, the capacitance and donor density of the passive film decrease, and the flat band potential and thickness of the space charge layer increases.
The results indicate that the deposition rate and electrical resistivity of the carbon films increase with the deposition temperature, while the degree of ordering, the nano-crystallite size and the Young's modulus of the carbon film decrease.
A thermodynamic model is proposed based on these investigations for the carbothermal conversion mechanism on compact anodic titania films showing that carbon and oxygen contents in the passive film decrease with increasing annealing temperature.
The spectrum reveals both the hydrogen and sp3 content of the carbon film decrease after the high-temperature experiments, which contribute to deterioration of the wear resistance of the coating.
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The saturation magnetization of Ni80Fe20 film decreased, and damping constant increased with T an.
On the other hand, coloring the film decreased its stability due to the galvanic effect.
The mechanical properties of the hydroxyapatite/sericin composite film decreased with increasing mineralization time.
As the break edge value increases, affected area by the air film decreases.
It is observed that when the surface is invaded by the film, decreasing film flow-rate provides higher ratio of wetted surface compared to increasing film flow-rate.
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CEO of Professional Science Editing for Scientists @ prosciediting.com