1395 - 1395 |
Special issue - Polymer electrolytes - Proceedings of the Seventh International Symposium on Polymer Electrolytes (ISPE-7), Noosa, Queensland, Australia, 6-11 August 2000 Forsyth M |
1397 - 1405 |
High ambient dc and ac conductivities in solvent-free, low-dimensional polymer electrolyte blends with lithium salts Zheng YG, Chia FS, Ungar G, Richardson TH, Wright PV |
1407 - 1411 |
Molten salt type polymer electrolytes Ohno H |
1413 - 1417 |
Decoupled ion transport in mesomorphic polymer electrolyte glasses Imrie CT, Ingram MD |
1419 - 1426 |
Structural relaxation in poly(ethyleneoxide) and poly(ethyleneoxide)-sodium iodide systems: a molecular dynamics study de Leeuw SW, Van Zon A, Bel GJ |
1427 - 1438 |
A basic investigation of anhydrous proton conducting gel electrolytes Wieczorek W, Zukowska G, Borkowska R, Chung SH, Greenbaum S |
1439 - 1446 |
Amphiphilic polymer gel electrolytes. 3. Influence of the ionophobic-ionophilic balance on the ion conductive properties Gavelin P, Ljungback R, Jannasch P, Wesslen B |
1447 - 1451 |
Diffusion of solvent/salt and segmental relaxation in polymer gel electrolytes Svanberg C, Bergman R, Borjesson L, Jacobsson P |
1453 - 1459 |
New polymer electrolytes based on PVC/PMMA blend for plastic lithium-ion batteries Choi NS, Park JK |
1461 - 1466 |
Ion conductivity of novel polyelectrolyte gels for secondary lithium-ion polymer batteries Travas-Sejdic J, Steiner R, Desilvestro J, Pickering P |
1467 - 1473 |
"Acid-in-chain" versus "base-in-chain" anionic polymer electrolytes for electrochemical devices Sun XG, Angell CA |
1475 - 1485 |
NMR and ion conductivity studies on cross-linked poly(ethyleneoxide-propyleneoxide) and branched polyether doped with LiN(SO2CF3)(2) Hayamizu K, Aihara Y, Price WS |
1487 - 1491 |
Anionic effect on ion transport properties in network polyether electrolytes Watanabe M, Tokuda H, Muto S |
1493 - 1498 |
Structure and conductivity in polydioxolane/LiCF3SO3 electrolytes Silva RA, Silva GG, Furtado CA, Moreira RL, Pimenta MA |
1499 - 1508 |
New polymer lithium secondary batteries based on ORMOCER (R) electrolytes-inorganic-organic polymers Popall M, Buestrich R, Semrau G, Eichinger G, Andrei M, Parker WO, Skaarup S, West K |
1509 - 1514 |
Humidity sensor based on alkali salts of poly(2-acrylamido-2-methylpropane sulfonic acid) Sakai Y, Matsuguchi M, Yonesato N |
1515 - 1521 |
Structural evolution and conductivity of PEO : LiBF4-MgO composite electrolytes Kumar B, Scanlon L, Marsh R, Mason R, Higgins R, Baldwin R |
1523 - 1532 |
Electrochemistry of planar solid-state amperometric devices based on Nation((R)) and polybenzimidazole solid polymer electrolytes Wallgren K, Sotiropoulos S |
1533 - 1537 |
A comparative vibrational spectroscopic study of lithium triflate and sodium triflate in linear poly(ethylenimine) York S, Frech R, Snow A, Glatzhofer D |
1539 - 1544 |
A Rouse model for polymer electrolytes van Zon A, de Leeuw SW |
1545 - 1552 |
New lithium salts on the computer: fiction or fact? Johansson P, Jacobsson P |
1553 - 1557 |
A vibrational spectroscopic study of lithium triflate in polyphosphazenes with linear oligoethyleneoxy side-chains of different lengths York S, Kellam EC, Allcock HR, Frech R |
1559 - 1563 |
Nano structure of NAFION: a SAXS study Haubold HG, Vad T, Jungbluth H, Hiller P |
1565 - 1569 |
Ionic conductance behavior of polymeric composite solid electrolytes containing lithium aluminate Morita M, Fujisaki T, Yoshimoto N, Ishikawa M |
1571 - 1579 |
Nuclear magnetic resonance study of PEO-based composite polymer electrolytes Bloise AC, Tambelli CC, Franco RWA, Donoso JP, Magon CJ, Souza MF, Rosario AV, Pereira EC |
1581 - 1586 |
Preparation and electrochemcial characteristics of plasticized polymer electrolytes based upon a P(VdF-co-HFP)/PVAc blend Choi NS, Lee YG, Park JK, Ko JM |
1587 - 1594 |
Zeolitic inorganic-organic polymer electrolytes: synthesis, characterization and ionic conductivity of a material based on oligo(ethylene glycol) 600, (CH3)(2)SnCl2 and K4Fe(CN)(6) Di Noto V, Fauri M, Vittadello M, Lavina S, Biscazzo S |
1595 - 1603 |
XPS study of lithium surface after contact with lithium-salt doped polymer electrolytes Ismail I, Noda A, Nishimoto A, Watanabe M |
1605 - 1608 |
Electron transfer reaction of poly(ethylene oxide)-modified azurin in poly(ethylene oxide) oligomers Nakamura N, Nakamura Y, Tanimura R, Kawahara NY, Ohno H, Deligeer, Suzuki S |
1609 - 1614 |
Effects of addition of a boric acid ester monomer to electrolyte solutions and gel electrolytes on their ionic transport properties Hirakimoto T, Nishiura M, Watanabe M |
1615 - 1621 |
Effect of high pressure on the electrical conductivity of ion conducting polymers Bendler JT, Fontanella JJ, Shlesinger MF, Wintersgill MC |
1623 - 1628 |
Complex impedance studies of S-SEBS block polymer proton-conducting membranes Edmondson CA, Fontanella JJ, Chung SH, Greenbaum SG, Wnek GE |
1629 - 1634 |
Electrochemical behavior of polyurethane ether electrolytes/carbon black composites and application to double layer capacitor Furtado CA, de Souza PP, Silva GG, Matencio T, Pernaut JM |
1635 - 1639 |
Poly(vinylidenefluoride)-based porous polymer electrolytes Magistris A, Mustarelli P, Quartarone E, Piaggio P, Bottino A |
1641 - 1649 |
Phase behavior and ion conductivity of electrolytes based on aggregating combshaped polyethers Jannasch P |
1651 - 1655 |
Characterization of perdeuterated H3PO4-doped nonaqueous gel electrolytes using P-31 nuclear magnetic resonance spectroscopy Chung SH, Wang Y, Greenbaum SG, Bzducha W, Zukowska G, Wieczorek W |
1657 - 1663 |
Platinum electrodeposition for polymer electrolyte membrane fuel cells Thompson SD, Jordan LR, Forsyth M |
1665 - 1672 |
Nuclear magnetic resonance and conductivity study of HEC/polyether-based polymer electrolytes Tambelli CE, Donoso JP, Regiani AM, Pawlicka A, Gandini A, LeNest JF |
1673 - 1678 |
Characterization of a proton conductor based on silicotungstic acid Sun JZ, MacFarlane DR, Forsyth M |
1679 - 1686 |
A comparison of ionic conductivity, thermal behaviour and morphology in two polyether-LiI-LiAl5O8 composite polymer electrolytes Ribeiro R, Silva GG, Mohallem NDS |
1687 - 1694 |
Micro-Raman study of poly(ethylene glycol) electrolytes near phase segregation compositions Silva RA, Silva GG, Pimenta MA |
1695 - 1697 |
New solid ionic conductor based on poly(ethylene oxide) and sodium trifluoroacetate Castillo J, Delgado I, Chacon M, Vargas RA |
1699 - 1702 |
More thermal studies on the PVOH/H3PO2/H2O solid proton conductor gels Vargas RA, Zapata VH, Matallana E, Vargas MA |
1703 - 1708 |
Acid-organic base swollen polymer membranes Sun JZ, Jordan LR, Forsyth M, MacFarlane DR |
1709 - 1715 |
Lithium ion conductivity in polyoxyethylene/polyethylenimine blends Tanaka R, Sakurai M, Sekiguchi H, Mori H, Murayama T, Ooyama T |
1717 - 1721 |
On the dynamics of PEO-NaI polymer electrolytes van Zon A, Mos B, Verkerk P, de Leeuw SW |
1723 - 1728 |
Synthesis of molten salt-type polymer brush and effect of brush structure on the ionic conductivity Yoshizawa M, Ohno H |
1729 - 1735 |
Thermal stability and electron transfer reaction of modified myoglobin immobilized on a carbon electrode in poly(ethylene oxide) oligomers Sato A, Matsuo T, Kawahara NY, Nakamura N, Ohno H |
1737 - 1746 |
Composite polyether electrolytes with Lewis acid type additives Borkowska R, Reda A, Zalewska A, Wieczorek W |
1747 - 1751 |
Conduction properties of lithium gel electrolytes investigated by impedance spectroscopy and pulsed-field gradient NMR with electric field Saito Y, Kataoka H, Sakai T, Deki S |
1753 - 1757 |
N-methyl-N-alkylpyrrolidinium tetrafluoroborate salts: ionic solvents and solid electrolytes Forsyth S, Golding J, MacFarlane DR, Forsyth M |