Catalyst that makes hydrogen gas breaks speed record
Looking to nature for their muse, researchers at Pacific Northwest National Laboratory have used a common protein to guide the design of a material that can make energy-storing hydrogen gas. The synthetic material works 10 times faster than the original protein found in water-dwelling microbes, the researchers report in the August 12 issue of the journal Science, clocking in at 100,000 molecules of hydrogen gas every second.
This reaction is just one part of a series of reactions to split water and make hydrogen gas, but the researchers say the result shows they can learn from nature how to control those reactions to make highly active synthetic catalysts for energy storage, such as in fuel cells. In addition, the natural protein, an enzyme, uses inexpensive, abundant metals in its design, which the team copied. Currently, these materials—called catalysts, because they spur reactions along—rely on very expensive metals such as platinum.
"This nickel-based catalyst is really very fast," said coauthor Dr. Morris Bullock, Director of the Center for Molecular Electrocatalysis at PNNL. "It's about a hundred times faster than the previous molecular catalyst record holder. And from nature, we knew it could be done with abundant and inexpensive nickel or iron."
To learn more, read the press release.
More information:
Monte L. Helm, et al., "A Synthetic Nickel Electrocatalyst With a Turnover Frequency Above 100,000 s-1 for H2 Production." Science, August 12, 2011, DOI 10.1126/science.1205864
Provided by Pacific Northwest National Laboratory