Aldridge, Craig, Torregrosa-Rivero, Verónica, Albaladejo-Fuentes, Vicente, Sánchez-Adsuar, María Salvadora, Illán-Gómez, María José BaTi0.8B0.2O3 (B = Mn, Fe, Co, Cu) LNT Catalysts: Effect of Partial Ti Substitution on NOx Storage Capacity Aldridge C, Torregrosa-Rivero V, Albaladejo-Fuentes V, Sánchez-Adsuar M-S, Illán-Gómez M-J. BaTi0.8B0.2O3 (B = Mn, Fe, Co, Cu) LNT Catalysts: Effect of Partial Ti Substitution on NOx Storage Capacity. Catalysts. 2019; 9(4):365. doi:10.3390/catal9040365 URI: http://hdl.handle.net/10045/91502 DOI: 10.3390/catal9040365 ISSN: 2073-4344 Abstract: The effect of partial Ti substitution by Mn, Fe, Co, or Cu on the NOx storage capacity (NSC) of a BaTi0.8B0.2O3 lean NOx trap (LNT) catalyst has been analyzed. The BaTi0.8B0.2O3 catalysts were prepared using the Pechini’s sol–gel method for aqueous media. The characterization of the catalysts (BET, ICP-OES, XRD and XPS) reveals that: i) the partial substitution of Ti by Mn, Co, or Fe changes the perovskite structure from tetragonal to cubic, whilst Cu distorts the raw tetragonal structure and promotes the segregation of Ba2TiO4 (which is an active phase for NOx storage) as a minority phase and ii) the amount of oxygen vacancies increases after partial Ti substitution, with the BaTi0.8Cu0.2O3 catalyst featuring the largest amount. The BaTi0.8Cu0.2O3 catalyst shows the highest NSC at 400 °C, based on NOx storage cyclic tests, which is within the range of highly active noble metal-based catalysts. Keywords:Perovskite, NO to NO2 oxidation, NOx storage capacity, LNT catalysts MDPI info:eu-repo/semantics/article