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In addition, the nickel-based prereforming catalyst prepared by a coprecipitation method had high catalytic activity and promising stability.
The operation conditions for preparing a Cu/ZnO-based multicomponent catalyst by a coprecipitation method were optimized.
Rh/Ce1−xZrxO2 (x = 0 1) samples (with 2 wt% Rh loading) were prepared by a coprecipitation method using NH3·H2O as a precipitant.
An Fe2O3(10 wt.%)/Al2O3 90 wt.%) catalyst prepared by a coprecipitation method was found to be effective for the dehydrogenation of ethylbenzene to produce styrene in the presence of CO2.
Peroxide-modified sodium titanate is synthesized by a coprecipitation method that uses titanium isopropoxide and sodium hydroxide precursors, with hydrogen peroxide as a mineralizer to modify the titanate to enhance actinide sorption.
And, the mesoporous ZnxCd1−xS exhibits an enhanced photocatalytic performance compared to the pure CdS sample obtained from the same procedure without Zn2+, the unleached Al-ZnxCd1−xS sample and the sample obtained by a coprecipitation method with the same composition.
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The SPIONs are synthesized via a coprecipitation method by addition of a base to a salt solution containing Fe2+ and Fe3+ to form magnetite (Fe3O4), followed by its oxidation into SPIONs (γ-Fe2O3).
MgFe2O4 (MFO) was prepared by a simple coprecipitation method followed by subsequently calcining at 600 °C, and carbon-coated MFO (MFO/C) was obtained at 550 °C using pyrrole as carbon source.
Nanosized ceria zirconia, ceria hafnia and ceria terbia solid solutions were synthesized by a modified coprecipitation method and evaluated for oxygen storage/release capacity (OSC) and CO oxidation activity.
Hydrophobic Fe3O4 nanoparticles were synthesized by a typical coprecipitation method.
Magnetic nanoparticles iron oxide with average sizes of 6 nm were synthesized by a chemical coprecipitation method from mixtures of FeCl2·4H2O and FeCl3·6H2O.
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