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Rational Design of Non-precious Metal Oxide Catalysts by Means of Advanced Synthetic and Promotional Routes

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solid acids; metal-oxide catalysts; tungstated zirconia; atomic layer deposition; Brønsted-acid strength; temperature-programmed desorption/thermogravimetric analysis; H–D exchange; CO hydrogenation; higher alcohols; support effects; Cu-based catalysts; ceria nanoparticles; morphological effects; Co3O4/CeO2 mixed oxides, deN2O process; ceria morphology; facet dependence; Fe2O3/CeO2 mixed oxides; CO oxidation; electrospinning; fibrous catalysts; metal ion content; calcination temperature; methane partial oxidation; selective catalytic reduction (SCR); catalyst; precursor; NOx conversion; NO decomposition; Co–Mn–Al mixed oxides; catalyst preparation; potassium promoter; nitric oxide; catalytic decomposition; cobalt-based mixed oxide; DRM; nickel; cerium dioxide; transient experiments; lattice oxygen; isotopes; copper-ceria; rational design; size; shape; electronic/chemical functionalization; N2O decomposition; preferential oxidation of CO (CO-PROX); water gas shift reaction (WGSR); CO2 hydrogenation; cobalt oxide; methane oxidation; modified alumina; magnesium oxide; nickel cobaltite; ceria; lattice distortion; oxygen mobility; ruthenium oxide; nanoparticles; electrocatalysts; sensing; arylamination reactions; adamantanyl-tethered-biphenylamines; polymer-supported catalyst; cobalt complex; Buchwald–Hartwig reaction; zinc ferrite; manganese ferrite; mesoporous materials; metal oxides; electronic band structure; photocatalysis; hexavalent chromium; organic pollutants; environmental remediation; n/a

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