Application of sulfonium-, thiophenium-, and thioxonium-based salts as electric double-layer capacitor electrolytes

The purpose of this paper is to develop novel molten salts based on sulfonium, thiophenium, and thioxonium cations as electrolytes for EDLCs. We evaluated various kinds of the salts, with tetrafluoroborate (BF 4) and bis(trifluorometanesulfonyl)amide (TFSA) anions, including several kinds of ionic l...

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Published inJournal of power sources Vol. 195; no. 19; pp. 6970 - 6976
Main Authors Orita, A., Kamijima, K., Yoshida, M., Yang, L.
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.10.2010
Elsevier
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Abstract The purpose of this paper is to develop novel molten salts based on sulfonium, thiophenium, and thioxonium cations as electrolytes for EDLCs. We evaluated various kinds of the salts, with tetrafluoroborate (BF 4) and bis(trifluorometanesulfonyl)amide (TFSA) anions, including several kinds of ionic liquids. The cell using the electrolyte containing diethylmethylsulfonium (DEMS)–BF 4 salt had the higher capacitance and the lower DC-IR value than those containing conventional salts such as 1-ethyl-3-methylimidazolium (EMI)–BF 4 and N, N, N-triethyl- N-methylammonium (TEMA)–BF 4 at 243 K and 2 V. The capacitance and DC-IR at low temperature depended strongly on the structure, particularly on the size of each ion. We also examined the durability of cells by continuous charging at 333 K and 2.5 V. The stabilities of sulfonium-, thiophenium-, and thioxonium-based electrolytes were much inferior to that of EMI–BF 4.
AbstractList The purpose of this paper is to develop novel molten salts based on sulfonium, thiophenium, and thioxonium cations as electrolytes for EDLCs. We evaluated various kinds of the salts, with tetrafluoroborate (BF sub(4)) and bis(trifluorometanesulfonyl)amide (TFSA) anions, including several kinds of ionic liquids. The cell using the electrolyte containing diethylmethylsulfonium (DEMS)-BF sub(4) salt had the higher capacitance and the lower DC-IR value than those containing conventional salts such as 1-ethyl-3-methylimidazolium (EMI)-BF sub(4) and N,N,N-triethyl-N-methylammonium (TEMA)-BF sub(4) at 243 K and 2 V. The capacitance and DC-IR at low temperature depended strongly on the structure, particularly on the size of each ion. We also examined the durability of cells by continuous charging at 333 K and 2.5 V. The stabilities of sulfonium-, thiophenium-, and thioxonium-based electrolytes were much inferior to that of EMI-BF sub(4).
The purpose of this paper is to develop novel molten salts based on sulfonium, thiophenium, and thioxonium cations as electrolytes for EDLCs. We evaluated various kinds of the salts, with tetrafluoroborate (BF 4) and bis(trifluorometanesulfonyl)amide (TFSA) anions, including several kinds of ionic liquids. The cell using the electrolyte containing diethylmethylsulfonium (DEMS)–BF 4 salt had the higher capacitance and the lower DC-IR value than those containing conventional salts such as 1-ethyl-3-methylimidazolium (EMI)–BF 4 and N, N, N-triethyl- N-methylammonium (TEMA)–BF 4 at 243 K and 2 V. The capacitance and DC-IR at low temperature depended strongly on the structure, particularly on the size of each ion. We also examined the durability of cells by continuous charging at 333 K and 2.5 V. The stabilities of sulfonium-, thiophenium-, and thioxonium-based electrolytes were much inferior to that of EMI–BF 4.
Author Yoshida, M.
Orita, A.
Kamijima, K.
Yang, L.
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Issue 19
Keywords Electrolyte
Capacitor
EDLC
Sulfonium
Molten salt
Thiophenium
Supercapacitor
Electrolytic capacitor
Double layers
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SSID ssj0001170
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Snippet The purpose of this paper is to develop novel molten salts based on sulfonium, thiophenium, and thioxonium cations as electrolytes for EDLCs. We evaluated...
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pascalfrancis
elsevier
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StartPage 6970
SubjectTerms Applied sciences
Capacitor
Capacitors. Resistors. Filters
EDLC
Electrical engineering. Electrical power engineering
Electrolyte
Exact sciences and technology
Molten salt
Sulfonium
Thiophenium
Various equipment and components
Title Application of sulfonium-, thiophenium-, and thioxonium-based salts as electric double-layer capacitor electrolytes
URI https://dx.doi.org/10.1016/j.jpowsour.2010.04.028
https://search.proquest.com/docview/753672146
Volume 195
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