1985
DOI: 10.1016/0378-7753(85)88022-8
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The electrochemical behavior of polysulfides in tetrahydrofuran

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Cited by 128 publications
(84 citation statements)
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“…Because S 8 is the most stable oxidation product, it was concluded by the authors that S 8 and not a polysulfide was the most likely electrochemical product. 34,38 Due to similarities in the cyclic voltammetry features of Li-S batteries based on THF 19,34,37 and DOL-DME 17,35,39 solvents, it is likely that Li-S batteries based on these solvents share the same mechanism of oxidation.…”
Section: Resultsmentioning
confidence: 99%
“…Because S 8 is the most stable oxidation product, it was concluded by the authors that S 8 and not a polysulfide was the most likely electrochemical product. 34,38 Due to similarities in the cyclic voltammetry features of Li-S batteries based on THF 19,34,37 and DOL-DME 17,35,39 solvents, it is likely that Li-S batteries based on these solvents share the same mechanism of oxidation.…”
Section: Resultsmentioning
confidence: 99%
“…It was also shown that the favored chain length of polysulfides is related to D, lower D values favor the formation of longer chains. Reduction of sulfur and polysulfides in DMF [16], THF [17] and at a glassy carbon electrode in THF [18,19] were also investigated. Ultraviolet (UV)-visible, electron spin resonance (ESR), Raman spectra, CV and time resolved spectro-electrochemical techniques were adopted for these studies.…”
Section: Early Studiesmentioning
confidence: 99%
“…In one case, the lithium polysulfides were dissolved in a THF based organic electrolyte and discharged at a porous carbon electrode, giving a rechargeable cathode (1). Since both polysulfide species were soluble, both high rate discharge and recharge were expected [2] Li2S4 + 2Li ~ 2Li~S~…”
Section: Introductionmentioning
confidence: 99%
“…Since both polysulfide species were soluble, both high rate discharge and recharge were expected [2] Li2S4 + 2Li ~ 2Li~S~ [2] In another, more recent approach, the alkali metal polysulfides were used in electrolytes in which the polysultides were insoluble. The resulting cells had a much longer storage life, but high current capabilities of the cells were limited (2). Both previous examples of polysulfide electrochemistry promised high gravimetric energy densities, but limitations on power capability and/or storage have, thus far, prevented commercial development of the systems.…”
mentioning
confidence: 99%
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