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The controlled nanostructuring opens up the possibility of improving the thermoelectric characteristics of the parent oxide.
The behaviour of each of the two films has been correlated to changes in the fine structure of the parent oxide during its growth.
Most peaks in LDI-MS spectra of AY adsorbed on the mixed oxide surface are much less intensive (under the same laser power) than those on parent oxide surfaces.
The implanted nitrogen established chemical bonds predominantly with the metal as manifested by its XPS chemical shift, creating by this a metal oxinitride on the surface of the parent oxide.
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After mechanical milling, the solid-state alloying and the accelerated substitutional reactions were observed between the parent oxides.
Electrode films (cast using MnO2, graphite and PVDF) have been investigated using N2 sorption at 77 K and show a more complex relationship than their parent oxides.
These results suggest that Y and Zr at 100 p.p.m. concentrations in α-Al2O3 occupy grain boundary sites with well defined nearest neighbor cation oxygen bond lengths similar to those in their parent oxides but with the next nearest neighbor cation cation distances varying considerably from site to site.
It is demonstrate from surface area measurements of Ga-Al oxide catalyst before and after the reaction that not only higher catalytic activity but also higher catalyst stability were observed on Ga-Al oxide, Ga-Al oxide with sulfate, and Ga-Al oxide prepared by sol gel method than on their parent oxides of alumina, Ga-Al oxide, and Ga-Al oxide prepared by incipient wetness method, respectively.
In general terms, Co-exchanged zeolites present very similar behavior to the parent metal oxide, whereas the Mn-exchanged present very poor performance, and the Fe-exchanged zeolite present markedly better performance than the parent bulk oxide.
The RWGS-CL is a two-step process for the conversion of CO2 to CO using a redox cycle of a parent metal oxide.
The thermogravimetry analysis data shows that the hybrid is more stable than its parent graphene oxide as observed with an increased onset temperature.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com