Porous silicon and sol-gel derived electrode structures and...

H - Electricity – 01 – M

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H01M 4/86 (2006.01) H01M 4/88 (2006.01) H01M 4/90 (2006.01) H01M 4/92 (2006.01) H01M 8/02 (2006.01) H01M 8/04 (2006.01) H01M 8/10 (2006.01)

Patent

CA 2444688

Fuel cell systems, electrode assemblies and electrode structure are disclosed herein. In one embodiment, the present invention is directed to an electrode assembly adapted for use with a fuel cell system, comprising: an anode derived from a first silicon substrate (with an optional sol-gel region); an electrolyte; and a cathode derived from a second silicon substrate (with an optional sol-gel region); wherein the anode and the cathode are spaced apart and substantially parallel to each other so as to define a spaced apart region, and wherein the electrolyte is interposed between the anode and the cathode, and wherein at least (i) the anode comprises one or more discrete anodic porous regions disposed across a top surface of the anode, wherein each of the one or more discrete anodic porous regions is defined by a plurality of anodic acicular pores that extend through the anode, and wherein the plurality of anodic acicular pores define inner anodic pore surfaces, or (ii) the cathode comprises one or more discrete cathodic porous regions disposed across a top surface of the cathode, wherein each of the one or more discrete porous cathodic porous regions is defined by a plurality of cathodic acicular pores that extend through the cathode, and wherein the plurality of cathodic acicular pores define inner cathodic pore surfaces.

L'invention concerne des systèmes de piles à combustible, des ensembles d'électrodes et des structures d'électrodes. Selon un mode de réalisation, l'invention se rapporte à un ensemble d'électrodes utilisé avec un ensemble de piles à combustible comprenant une anode dérivée d'un premier substrat de silicium (avec une zone sol-gel facultative); un électrolyte; et une cathode dérivée d'un second substrat de silicium (avec une zone sol-gel facultative), l'anode et la cathode étant séparées et pratiquement parallèles de manière à définir une zone séparée. L'électrolyte, quant à lui, vient entre l'anode et la cathode. L'anode comprend au moins (i) une ou plusieurs zones poreuses anodiques discrètes traversant une surface supérieure de l'anode, chaque zone poreuse anodique discrète étant définie par une pluralité de pores aciculaires anodiques s'étendant à travers l'anode et la pluralité de pores aciculaires anodique définissant des surfaces poreuses anodiques internes, ou la cathode comprend (ii) une ou plusieurs zones poreuses cathodiques discrètes traversant une surface supérieure de la cathode, chaque zone poreuse cathodique discrète étant constituée par une pluralité de pores aciculaires cathodiques s'étendant à travers la cathode et la pluralité de pores aciculaires cathodiques définissant des surfaces poreuses cathodiques internes.

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