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Ultrafine particles of IrO2-SnO2 binary oxides have been prepared by a sol-gel process consisting of hydrolysis and condensation of metal alkoxide alcoholic solutions.
Ultrafine particles of IrTa binary oxides have been prepared by a sol-gel process consisting of hydrolysis and condensation of metal alkoxides in the liquid phase.
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A titanium-boron binary oxide has been prepared by sol gel method and used as a photocatalyst for the decomposition of water.
Nanostructured binary transition oxides have been extensively developed as high-performance electrode materials for supercapacitors.
Recently, binary metal oxides have been considerably researched for energy storage since it can provide higher electrical conductivity and electrochemical activity than single components.
Binary metal oxides have been proven to be promising materials because of their advantages, which can improve the electrochemical performance of single metal oxides such as reversible capacity, structural stability and electronic conductivity.
3D-transition binary metal oxides have been considered as promising anode materials for lithium-ion batteries with improved reversible capacity, structural stability and electronic conductivity compared with single metal oxides.
The sol-gel chemistry to synthesize the cellulose-binary mixed oxides has been widely reported in the literature.
For years, nitrous oxide has been used commercially by dentists and by bakers.
Alumina-supported vanadium oxide, VOx/Al2O3, and binary vanadium antimony oxides, VSbOx/Al2O3, have been tested in the ethylbenzene dehydrogenation with carbon dioxide and characterized by SBET, X-ray diffraction, X-ray photoelectron spectroscopy, hydrogen temperature-programmed reduction and CO2 pulse methods.
Since then, several other binary pulsars have been found.
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