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Aluminum oxide, Al2O3, formed on the surface can be used as a mechanically protective, oxidation-resistive, electricity-insulating film.
An electronic synapse device based on metal oxide resistive switching memory for neuromorphic computation.
Development directions on producing oxidation and ablation resistive C/C composites are concentrated on decreasing preparation cost, controlling pyrolytic carbon texture, optimizing compositions of the doped ceramics used in the matrix and the coating layer, and combining matrix modification with an anti-ablation coating.
Hafnium oxide and titanium oxide are naturally resistive.
After the initial 0.5 h reaction, the O2 gas evolution rate decreased dramatically due to the self-oxidation of the surfaces of the oxynitride crystals, forming the highly resistive oxides, and the photo-deposition of metallic silver nanoparticles on the oxynitride crystal surfaces, disturbing light absorption and cover surface active sites.
The increase in the LRS value may be due to the oxidation at electrodes during the resistive switching process and it is in good agreement with the experimental result reported in the literature [26].
The VH termination appears then to be much more resistive to re-oxidation, i.e., it provides a much better surface chemical passivation than HF etching.
The striking improvement in thermal stability was achieved by sealing the magnet body with corrosion resistive metal to limit oxidation.
The surface or grain boundaries are then oxidized to produce thin resistive layers.
In one research was used the thermal oxidation method to synthesized Fe2O3 nanowires via resistive heating and a transverse electric field which was applied perpendicularly to the substrate during thermal oxidation, prepare copper oxide nanowires and applied transverse electric field to the substrates [5].
An integration of zinc oxide (ZnO) nanowires (NWs) onto carbon microfibers (μC) using electrochemical deposition and thermal oxidation approach has been developed and used as a versatile resistive (oxidizing and reducing) gas sensor.
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