Macroporous silicon with millions of parallel microchannels per square centimeter can be used as a micromonolithic support for high-speed catalysis in miniaturized systems, opening a new and exciting field of research and application. We used macroporous silicon membranes with >106 parallel microchannels with a diameter of 3.3 µm and depth/width ratio >60 as microreactors for the generation of hydrogen through the steam reforming of ethanol. The microchannels walls were coated with a thin layer of Co3O4–ZnO catalyst by a complexation–decomposition method, resulting in a specific inner surface of 105–106 m2¿m-3. A constant flow of 20 µL¿s-1 H2 (0.054 mmol¿min-1 H2) was obtained from a liquid water–ethanol mixture at 773 K with a steam-to-car...
A reformer stack was made using a silicon technology and a fill-and-dry catalyst coating method. Bef...
A silicon micromonolith containing ca. 40000 regular channels of 3.3μm in diameter per square millim...
\u3cp\u3eAqueous-phase reforming (APR) of biocarbohydrates is conducted in a catalytically stable wa...
Macroporous silicon with millions of parallel microchannels per square centimeter can be used as a m...
Macroporous silicon membranes, consisting of straight parallel pores with a diameter of 3.3μm and de...
Ethanol steam reforming (S/C = 3) was effectively performed at low temperature over catalytic wall r...
A silicon micromonolith of 7 mm diameter and 0.2 mm length containing 1.5 million regular channels w...
A functionalized silicon micromonolith of 7¿mm in diameter and 210¿µm-thick was evaluated for the pr...
A silicon micromonolith of 7 mm diameter and 0.2 mm length containing 1.5 million regular channels w...
The present contribution reports the design, manufacture and experimental proof of concept of an eth...
A macroporous silicon micromonolith containing ca. 40,000 regular channels of 3.3 ¿m in diameter per...
A novel design of a silicon-based micro-reformer for onboard hydrogen generation from ethanol is pre...
The typology of using hydrogen as an energy carrier and its implementation in portable fuel cells ha...
© . This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommo...
A silicone microreactor with 500 mu m-width microchannels coated with a Au/TiO2 photocatalyst was ma...
A reformer stack was made using a silicon technology and a fill-and-dry catalyst coating method. Bef...
A silicon micromonolith containing ca. 40000 regular channels of 3.3μm in diameter per square millim...
\u3cp\u3eAqueous-phase reforming (APR) of biocarbohydrates is conducted in a catalytically stable wa...
Macroporous silicon with millions of parallel microchannels per square centimeter can be used as a m...
Macroporous silicon membranes, consisting of straight parallel pores with a diameter of 3.3μm and de...
Ethanol steam reforming (S/C = 3) was effectively performed at low temperature over catalytic wall r...
A silicon micromonolith of 7 mm diameter and 0.2 mm length containing 1.5 million regular channels w...
A functionalized silicon micromonolith of 7¿mm in diameter and 210¿µm-thick was evaluated for the pr...
A silicon micromonolith of 7 mm diameter and 0.2 mm length containing 1.5 million regular channels w...
The present contribution reports the design, manufacture and experimental proof of concept of an eth...
A macroporous silicon micromonolith containing ca. 40,000 regular channels of 3.3 ¿m in diameter per...
A novel design of a silicon-based micro-reformer for onboard hydrogen generation from ethanol is pre...
The typology of using hydrogen as an energy carrier and its implementation in portable fuel cells ha...
© . This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommo...
A silicone microreactor with 500 mu m-width microchannels coated with a Au/TiO2 photocatalyst was ma...
A reformer stack was made using a silicon technology and a fill-and-dry catalyst coating method. Bef...
A silicon micromonolith containing ca. 40000 regular channels of 3.3μm in diameter per square millim...
\u3cp\u3eAqueous-phase reforming (APR) of biocarbohydrates is conducted in a catalytically stable wa...