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The film is converted in the transpassive region to a higher oxide form, presumably CrO2−4.
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A theoretical model describing the electrochemical oxidation of organics at oxide electrodes (MOx) forming the higher oxide (MOx+1) is described.
Supernitrides comprise a whole family of sputtered films deposited by means of highly ionized plasmas, and they are characterized by a dense, nano-crystalline or nano-layered structure and a high content of oxide forming elements.
Higher oxygen contents indicate that metal ions must be present in oxide form.
It seems that the high amount of iron oxide formed on the base has been increase the BET surface area of catalyst prepared with SSD method.
On subsequent cooling, the oxide formed by high-temperature oxidation cracks and spalls at the edges of the uplifted grains.
Experiments are described in which the R-line luminescence spectra from the thermally grown oxide formed by high temperature oxidation are recorded as a function of uniaxial strain and under different polarization conditions.
At high temperatures these oxides form a network structured fluids.
While the high activity of the monolayer oxide formed on extended Pt surfaces decreases after the initial CO-oxidation cycle, bilayer oxide formed on nanoscaled facets sustain the high CO electrooxidation activity.
Metals with high oxidation states form oxides whose bonds have a more covalent nature.
The low leakage currents achieved are explained by the high quality of both tunneling and capping oxide formed by dry thermal process compared with the deposited oxides used in the alternative methods of MOS capacitor formation [15].
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