The milling of Palladium acetate and CeO2 under dry conditions results in robust, environmentally friendly catalysts with excellent methane oxidation activity. These catalysts show superior performance compared to those prepared by milling metallic Pd and outperform Pd/CeO2 catalysts prepared by traditional incipient wetness technology. Morphological investigation by HRTEM, Raman and DRIFT spectroscopic analysis, in-situ synchrotron X-ray diffraction (XRD) and X-ray absorption fine structure (XAFS) characterization techniques, coupled with ambient pressure XPS analysis, have been used to deeply characterize the samples, and allowed to identify the presence of Pd0/Pd2+ species with different degrees of interaction with ceria (Ce3+/Ce4+). The...
In the present work, 1 wt% and 5 wt% Pd/GDC10 (Gd0.1Ce0.9O1.95) nanopowders were prepared by two dif...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
The methane dry reforming (DRM) reaction mechanism was explored via mechanochemically prepared Pd/Ce...
The milling of Palladium acetate and CeO2 under dry conditions results in robust, environmentally fr...
By carefully mixing Pd metal nanoparticles with CeO2 polycrystalline powder under dry conditions, an...
Shiva Fazlikeshteli ha guanyat el Premi a la millor presentació oral per aquest article a la 12th In...
The preparation of catalytic materials via mechanochemical routes is a very promising alternative to...
Bimetallic Pt–Pd catalysts supported on ceria have been prepared by mechanochemical synthesis and te...
Efficiently treating methane emissions in transportation remains a challenge. Here, we investigate p...
Palladium based catalysts are the most active for methane oxidation. The tuning of their composition...
The present study reports an improved design for Pd/Ce-Pr catalysts. Pd-impregnated nanostructured c...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
An ecofriendly solventless mechano-chemical synthesis was developed for the preparation of Pd/CeO2 m...
Catalytic oxidation is the most effective technology to control methane emissions from both mobile a...
In this paper, a comparative investigation of the catalytic performances of Pd@TiO2 and Pd@CeO2, cor...
In the present work, 1 wt% and 5 wt% Pd/GDC10 (Gd0.1Ce0.9O1.95) nanopowders were prepared by two dif...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
The methane dry reforming (DRM) reaction mechanism was explored via mechanochemically prepared Pd/Ce...
The milling of Palladium acetate and CeO2 under dry conditions results in robust, environmentally fr...
By carefully mixing Pd metal nanoparticles with CeO2 polycrystalline powder under dry conditions, an...
Shiva Fazlikeshteli ha guanyat el Premi a la millor presentació oral per aquest article a la 12th In...
The preparation of catalytic materials via mechanochemical routes is a very promising alternative to...
Bimetallic Pt–Pd catalysts supported on ceria have been prepared by mechanochemical synthesis and te...
Efficiently treating methane emissions in transportation remains a challenge. Here, we investigate p...
Palladium based catalysts are the most active for methane oxidation. The tuning of their composition...
The present study reports an improved design for Pd/Ce-Pr catalysts. Pd-impregnated nanostructured c...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
An ecofriendly solventless mechano-chemical synthesis was developed for the preparation of Pd/CeO2 m...
Catalytic oxidation is the most effective technology to control methane emissions from both mobile a...
In this paper, a comparative investigation of the catalytic performances of Pd@TiO2 and Pd@CeO2, cor...
In the present work, 1 wt% and 5 wt% Pd/GDC10 (Gd0.1Ce0.9O1.95) nanopowders were prepared by two dif...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
The methane dry reforming (DRM) reaction mechanism was explored via mechanochemically prepared Pd/Ce...