Escobar-Bedia, Francisco Javier; Lopez-Haro, Miguel; Calvino, Jose Juan; Martin-Diaconescu, Vlad; Simonelli, Laura; Pérez-Dieste, Virginia; Sabater Picot, Mª José; Concepción Heydorn, Patricia; Corma Canós, Avelino(American Chemical Society, 2022-04-01)
[EN] A heterogeneous ruthenium catalyst consisting ofisolated single atoms and disordered clusters stabilized in a N-doped carbon matrix has been synthesized with very good activityand remarkable regioselectivity in the ...
[EN] The dynamic behavior of a CuO/ZnO/Ga2O3 catalyst under methanol steam reforming (MSR) reaction conditions promoted by a high dispersion of the copper nanoparticles and defect sites of a nonstoichiometric ZnGa2O4 spinel ...
[EN] Interstitial carbon-doped RuO2 catalyst with the newly reported ruthenium oxycarbonate phase is a key component for low-temperature CO2 methanation. However, a crucial factor is the stability of interstitial carbon ...
Liu, Lichen; Puga, Alberto V.; Cored-Bandrés, Jorge; Concepción Heydorn, Patricia; Pérez-Dieste, Virginia; García Gómez, Hermenegildo; Corma Canós, Avelino(Elsevier, 2018-11-05)
[EN] The hydrogenation of CO2 into hydrocarbons promoted by the action of sunlight has been studied on Co nanoparticles covered by thin carbon layers. In particular, nearly 100% selectivity to hydrocarbons is obtained with ...
[EN] We present a highly selective and active Pd carbon catalyst prepared by an easy hydrothermal synthesis method. This synthetic procedure allows the stabilization under mild conditions of interstitial carbon atoms on ...
López-García, Andrés; Carrillo-Del Teso, Alfonso Juan; Jiménez, Catalina Elena; Suarez Anzorena, Rosario; Garcia-Diez, Raul; Pérez-Dieste, Virginia; Villar-García, Ignacio J.; Hungría, Ana B.; Bar, Marcus; Serra Alfaro, José Manuel(The Royal Society of Chemistry, 2024-08-27)
[EN] Multicomponent nanoparticle exsolution has emerged as a promising process for obtaining highly active catalysts supported on perovskite oxides. For instance, FeCoNi alloys can be exsolved from Sr2FeCo0.2Ni0.2Mn0.1Mo ...