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Tytuł artykułu

Preparation and characterization of PEO-based composite gel-polymer electrolytes complexed with lithium trifluoro methane sulfonate

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Chitosan has been successfully incorporated as a filler in a polyethylene oxide (PEO) and lithium trifluoromethanesulfonate (LiCF3SO3) matrix with a combination of plasticizers, namely 1,3-dioxolane (DIOX) and tetraethylene glycol dimethylether (TEGDME). The composite gel-polymer electrolyte (CGPE) membranes were prepared by solution casting technique in an argon atmosphere. The prepared membranes were subjected to SEM, TG/DTA and FT-IR analyses. A Li/CGPE/Li symmetric cell was assembled and the variation of interfacial resistance was measured as a function of time. The lithium transference number (Li+t) was measured and the value was calculated as 0.6 which is sufficient for battery applications. The electrochemical stability window of the sample was studied by linear sweep voltammetry and the polymer electrolyte was found to be stable up to 5.2 V.
Wydawca
Rocznik
Strony
185--192
Opis fizyczny
Bibliogr. 41 poz., rys., tab.
Twórcy
  • Department of Physics, University College of Engineering, Anna University, Dindigul-624 622, India
autor
  • Department of Physics, University College of Engineering, Anna University, Dindigul-624 622, India
  • School of Physics, Madurai Kamaraj University, Madurai-21, India
Bibliografia
  • [1] YAMIN H., PELED E., J. Power Sources, 9 (1983), 281.
  • [2] MARMORSTEIN D., YU T.H., STRIEBEL K.A., MCLARNON F.R., HOU J., CAIRNS E.J., J. Power Sources, 89 (2000), 219.
  • [3] ARMAND M., TARASCON J.M., Nature, 451 (2008), 652.
  • [4] TARASCON J.M., ARMAND M., Nature, 414 (2001), 359.
  • [5] WHITTINGHAM M.S., Chem. Rev., 104 (2004), 4271.
  • [6] ELLIS B.L., LEE K.T., NAZAR L.F., Chem. Mater., 22 (2010), 691.
  • [7] LIU J., MANTHIRAM A., J. Electrochem. Soc., 156 (1) (2009), A66.
  • [8] OHZUKU T., BRODD R.J., J. Power Sources, 174 (2) (2007), 449.
  • [9] RYU J.H., PARK B.G., KIM S.B., PARK Y.J., J. Appl. Electrochem., 39 (7) (2008), 1059.
  • [10] LEE H.J., PARK K.S., PARK Y.J., J. Power Sources, 195 (18) (2010), 6122.
  • [11] LIAO X.Z., MA Z.F., GONG Q., HE Y.S., PEI L., ZENG L.J., Electrochem. Commun., 10 (2008), 691.
  • [12] IRIYAMA Y., YADA C., ABE T., OGUMI Z., KIKUCHI K., Electrochem. Commun., 8 (2006), 1287.
  • [13] CUI W.J., LIU H.J., WANG C.X., XIA Y.Y., Electrochem. Commun., 10 (2008), 1587.
  • [14] ZHANG P., ZHANG H.P., LI G.C., LI Z.H., WU Y.P., Electrochem. Commun., 10 (2008), 1052.
  • [15] ZHENG J.M., ZHANG Z.R., WU X.B., DONG Z.X., ZHU Z., YANG Y., J. Electrochem. Soc., 155 (2008), A775.
  • [16] BASKARAN R., SELVASEKARAPANDIAN S., KUWATA N., KAWAMURA J., HATTORI T., Mater. Chem. Phys., 98 (2006), 55.
  • [17] MANUEL STEPHAN A., KUMAR T.P., KARAN R.T., RENGANATHAN N.G., PITCHUMANI S., SHRISUDERSAN J., MUNIYANDI N., Solid State Ionics, 130 (2000), 123.
  • [18] MANUEL STEPHAN A., KUMAR T.P., KARAN R.T., RENGANATHAN N.G., PITCHUMANI S., MUNIYANDI N., J. Power Sources, 83 (2000), 80.
  • [19] EVANS J., VINCENT C.A., BRUCE P.G., Polymer, 28 (1987), 2324.
  • [20] SHIN J.H., ALESSANDRINI F., PASSERINI S., J. Electrochem. Soc., 152 (2005), A283.
  • [21] APPETECCHI G.B., HASSOUN J., SCROSATI B., CROCE F., CASSEL F., SOLOMON M., J. Power Sources, 124 (2003), 246.
  • [22] ITOH T., ICHIKAWA Y., UNO T., KUBO M., YAMAMOTO O., Solid State Ionics, 156 (2003), 393.
  • [23] WEN Z., ITOH T., IKEDA M., HIRATA N., KUBO M., YAMAMOTO O., J. Power Sources, 90 (2000), 20.
  • [24] SCROSATI B., CROCE F., Polym. Advan. Technol., 4 (1993), 198.
  • [25] SWIERCZYNSKI D., ZALEWSKA A., WIECZOREK W., Chem. Mater., 13 (2001), 1560.
  • [26] LEE H.S., YANG X.Q., MCBREEN J., XU Z.S., SKOTHEIM T.A., OKAMOTO Y., J. Electrochem Sci., 141 (1994), 886.
  • [27] JOSHI P.V., CHAKRADHAR S.B., AMBIKA P.M., VENKATESH G.M., GILBERT R.D., FORNES R.E., Polymer, 26 (1985), 45.
  • [28] VENKATESH G.M., GILBERT R.D., FORNES R.E., Polymer, 26 (1985), 45.
  • [29] POUCHERT C.J., The Aldrich Library of FTIR, Aldrich Chemical, vol. 1 and 2, 1st Ed., Milwaukee, 1985.
  • [30] SCOTT C.E., MACOSKO C.W., Polymer, 36 (1995), 461.
  • [31] MAMUER STEPHEN A., SAITO Y., MUNIYANDI N., RANGANATHAN N.G., KALYANASUNDARAM S., NIMMA ELIZABETH R., Solid State Ionics, 148 (2002), 467.
  • [32] CHU P.P., REDDY M.J., KAO H.M., Solid State Ionics, 156 (2003), 141.
  • [33] HWANG Y.J., NAHM K.S., PREM KUMAR T., MANUEL STEPHAN A., J. Membr. Sci., 310 (2008), 349.
  • [34] KIM C.S., OH S.M., Electrochim. Acta, 46 (9) (2001), 1323.
  • [35] MANUEL STEPHAN A., SAITO Y., Solid State Ionics, 148 (3 – 4) (2002), 475.
  • [36] VICKRAMAN P., RAMAMURTHY S., Mater. Lett., 60 (28) (2006), 3431.
  • [37] RHOO H.J., KIM H.T., PARK J.K., HWANG J.S., Electrochim. Acta, 42 (1997), 1571.
  • [38] FERNICOLA A., CROCE F., SCROSATI B., WATANABE T., OHNO H., J. Power Sources, 174 (2007), 342.
  • [39] ANGULAKSHMI N., SENTHIL KUMAR R., ANBU KULANDAINATHAN M., MANUEL STEPHAN A., J. Phys. Chem. C, 118 (2014), 24240.
  • [40] AURBACH D., WEISMANN I., YAMIN H., ELSTER E., J. Electrochem. Soc., 145 (1998), 1421.
  • [41] JIANG Z., CARROLL B., ABRAHAM K.M., Electrochim. Acta, 42 (1997), 2667.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8a2ebde3-c046-45e5-b443-3b731ee079ed
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