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At the anode, the available data suggest a mechanism of oxidation of the free oxide anions which concentration in oxide melts is reported to be limited.
The response of the zirconia electrode in the fused salt has been tested by known variations of pO2−, due to coulometric titrations of free oxide ions, then of hydroxide ions, by means of metallic ions (Ni2+, Cu+) forming scarcely soluble metallic oxides.
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Such attractive ultra-high temperature oxidation resistance was attributed to the formation of a dense and spallation-free oxide scale and low oxygen diffusion coefficient of ZrCxOy.
Self-catalyzed GaAs NWs were grown on lithography-free oxide patterns using molecular beam epitaxy (MBE).
This data gives new insight into the NW growth kinetics on lithography-free oxide patterns.
However, further experiments are required for forming a complete understanding of the sub-Poissonian nature of the GaAs NWs grown on lithography-free oxide patterns.
Structural analysis of self-catalyzed GaAs nanowires (NWs) grown on lithography-free oxide patterns is described with insight on their growth kinetics.
Furthermore, the HR-TEM and HR-XRD studies revealed that the GaAs NWs grown on lithography-free oxide patterns exhibit high crystalline quality characterized by up to 2-μm long defect-free ZB segments.
Based on the structural and optical analysis presented in this work, we have shown that the lithography-free oxide patterns provide a suitable template for growth of high-quality GaAs NWs by Ga-catalyzed technique.
The present study demonstrates the formation of an almost Ni-free oxide layer ~ 180 nm in thickness on a NiTi surface through anodization in 0.1 M HNO3 electrolyte.
The purpose of this study is to elucidate the formation mechanism of a toxic-element-free oxide layer on a Ti 6Al 4V alloy by using d.c.
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