This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based supported membranes for hydrogen purification. Ultra-thin membranes have been prepared by a combination of PVD magnetron sputtering and electroless plating techniques. The membranes have been characterized for single gas and mix gas permeation at temperatures between 350 and 500 °C and they have shown to exhibit very high hydrogen fluxes combined with a good perm-selectivity (H2/N2 ≈ 500). These results have been compared with the performance of highly permeable membranes reported in the literature. The influence of the morphology of the deposited Pd-based layers on the membrane performance has been investigated and discussed
\u3cp\u3eThis work reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-Ag su...
In this paper, we report the performance of supported PdRu membranes for possible applications to hy...
This work reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-Ag supported m...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
\u3cp\u3eThis work reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-Ag su...
In this paper, we report the performance of supported PdRu membranes for possible applications to hy...
This work reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-Ag supported m...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
This paper reports the preparation and characterization of ultra-thin (∼1 μm thick) Pd-based support...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
In this paper, we report the performance of supported Pd–Ru membranes for possible applications to h...
\u3cp\u3eThis work reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-Ag su...
In this paper, we report the performance of supported PdRu membranes for possible applications to hy...
This work reports the preparation and characterization of ultra-thin (~1 µm thick) Pd-Ag supported m...