Journal of The Electrochemical Society
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Abstract
Mechanistic studies of the reactions in Li-SOC12 cells have been undertaken to improve understanding of the safety problems of these cells. The electrochemical reduction of 1.5M LiA1C1JSOC12 has been investigated using gas chroma-tography, electron spin resonance spectroscopy, and infrared spectroscopy. C12 and $2C12 have been identified as inter-mediates in the reduction of SOC12, along with a radical species (g ~ = 2.004, g~, = 2.016, g = = 2.008) and the proposed triplet ground-state dimer of this radical. SO ~ and sulfur have been identified as products. Based upon these findings, a mechanism for the electrochemical reduction of 1.5M LiA1C1JSOC12 has been proposed, and its implications for safety of…
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Topics & keywords
Topics
Keywords
- Nafion
- Proton exchange membrane fuel cell
- Materials science
- Ionomer
- Chemical engineering
- Polymer
- Membrane
- Nanocomposite
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