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Synthesis and characterization of polyphosphazene materials for advanced lithium-water batteries

  • Mason K. Harrup
  • , Thomas A. Luther
  • , Frederick F. Stewart
  • , Christopher J. Orme
  • , Mark L. Stone
  • , William Bauer

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Development of long-lived high-energy lithium-water batteries hinges upon developing solid polymer electrolytes (SPEs) with the appropriate properties. These polymer membranes paradoxically must allow lithium atoms to pass from the metallic surface, oxidize to the ionic form, and then pass through the membrane to the water outside. At the same time, the membrane must exclude all water, tramp ions, and deleterious gases such as oxygen and carbon dioxide. SPE membranes are the leading choice for lithium-water batteries however, because current non-membrane approaches being pursued by other research groups suffer from two insurmountable problems - storage and non-productive energy loss via direct lithium/water reaction. In this paper, we present the results of our latest investigations into the transport of water and permanent gasses, such as carbon dioxide, through polyphosphazene SPE materials designed to address the challenges inherent in lithium water batteries.

Original languageEnglish
Title of host publication234th ACS National Meeting, Abstracts of Scientific Papers
StatePublished - 2007
Event234th ACS National Meeting - Boston, MA, United States
Duration: Aug 19 2007Aug 23 2007

Publication series

NameACS National Meeting Book of Abstracts
ISSN (Print)0065-7727

Conference

Conference234th ACS National Meeting
Country/TerritoryUnited States
CityBoston, MA
Period08/19/0708/23/07

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