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posted by Cactus on Friday March 07 2014, @01:11AM   Printer-friendly
from the polyhedral-nanoframes-of-bimetallic-nanocrystals dept.

AnonTechie writes:

"A big step in the development of next-generation fuel cells and water-alkali electrolyzers has been achieved with the discovery of a new class of bimetallic nanocatalysts that are an order of magnitude higher in activity than the target set by the U.S. Department of Energy (DOE) for 2017.

The new catalysts, hollow polyhedral nanoframes of platinum and nickel, feature a three-dimensional catalytic surface activity that makes them significantly more efficient and far less expensive than the best platinum catalysts used in today's fuel cells and alkaline electrolyzers. This research was a collaborative effort between DOE's Lawrence Berkeley National Laboratory (Berkeley Lab) and Argonne National Laboratory (ANL).

Fuel cells and electrolyzers can help meet increasing demands for electrical power while reducing the emission of carbon and other atmospheric pollutants. These technologies are based on either the oxygen reduction reaction (fuel cells), or the hydrogen evolution reaction (electrolyzers). Currently, the best electrocatalyst for both reactions consists of platinum nanoparticles dispersed on carbon. Though quite effective, the high cost and limited availability of platinum makes large-scale use of this approach a major challenge for both stationary and portable electrochemical applications."

 
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  • (Score: 4, Interesting) by TheLink on Friday March 07 2014, @05:52AM

    by TheLink (332) on Friday March 07 2014, @05:52AM (#12510) Journal
    Any progress on this front? e.g. either hydrocarbons directly or splitting the hydrocarbons first.

    That way you can leverage existing fuel infra (but probably need some filters to prevent poisoning of any catalysts used with stuff like maybe sulfur).
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