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‘Double-duty’ electrolyte enables new chemistry for longer-lived batteries

Posted at 8:53 pm May 12, 2014
By Oak Ridge National Laboratory Leave a Comment

ORNL Battery Chemistry

When ORNL researchers incorporated a solid lithium thiophosphate electrolyte into a lithium-carbon fluoride battery, the device generated a 26 percent higher capacity than what would be its theoretical maximum if each component acted independently. (Image courtesy ORNL)

 

Researchers at Oak Ridge National Laboratory have developed a new and unconventional battery chemistry aimed at producing batteries that last longer than previously thought possible.

In a study published in the Journal of the American Chemical Society, ORNL researchers challenged a long-held assumption that a battery’s three main components—the positive cathode, negative anode, and ion-conducting electrolyte—can play only one role in the device.

The electrolyte in the team’s new battery design has dual functions: It serves not only as an ion conductor but also as a cathode supplement. This cooperative chemistry, enabled by the use of an ORNL-developed solid electrolyte, delivers an extra boost to the battery’s capacity, and extends the lifespan of the device.

“This bi-functional electrolyte revolutionizes the concept of conventional batteries and opens a new avenue for the design of batteries with unprecedented energy density,” said ORNL’s Chengdu Liang. [Read more…]

Filed Under: Front Page News, Oak Ridge National Laboratory, Science, U.S. Department of Energy Tagged With: anode, batteries, battery chemistry, cathode, Center for Nanophase Materials Sciences, Chengdu Liang, CNMS, conductor, Division of Materials Sciences and Engineering, DOE, electrolyte, Ezhiylmurugan Rangasamy, Gayatri Sahu, Journal of the American Chemical Society, Juchuan Li, lithium carbon fluoride battery, lithium thiophosphate electrolyte, Nancy Dudney, Nanoscale Science Research Centers, NSRC, Oak Ridge National Laboratory, Office of Science, ORNL, Pushing the Theoretical Limit of Li-CFx Batteries: A Tale of Bi-functional Electrolyte, U.S. Department of Energy

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