233 - 234 |
Special Issue of Electrochimica Acta (PBFC-1) - Polymer Batteries and Fuel Cells - Selection of Papers from the 1st International Conference PBFC-I - 1-6 June 2003 - Jeju Island, Korea Park JK |
235 - 242 |
Interfacial behavior of polymer electrolytes Kerr JB, Han YB, Liu G, Reeder C, Xie JB, Sun XG |
243 - 246 |
Concept of polymer alloy electrolytes: towards room temperature operation of lithium-polymer batteries Noda K, Yasuda T, Nishi Y |
247 - 254 |
Design of electrolyte solutions for Li and Li-ion batteries: a review Aurbach D, Talyosef Y, Markovsky B, Markevich E, Zinigrad E, Asraf L, Gnanaraj JS, Kim HJ |
255 - 261 |
Development of new class of ion conductive polymers based on ionic liquids Ohno H, Yoshizawa M, Ogihara W |
263 - 270 |
LiFePO4/polymer/natural graphite: low cost Li-ion batteries Zaghib K, Striebel K, Guerfi A, Shim J, Armand M, Gauthier M |
271 - 274 |
Influence of hyperbranched polymer structure on ionic conductivity in composite polymer electrolytes of PEO/hyperbranched polymer/BaTiO3/Li salt system Itoh T, Horii S, Uno T, Kubo M, Yamamoto O |
275 - 279 |
Ionic conductance of gel electrolyte using a polyurethane matrix for rechargeable lithium batteries Yoshimoto N, Nomura H, Shirai T, Ishikawa M, Morita M |
281 - 284 |
Ionic conductivity and transport number of lithium ion in polymer electrolytes containing PEG-borate ester Kato Y, Yokoyama S, Yabe T, Ikuta H, Uchimoto Y, Wakihara M |
285 - 288 |
The effect of mixed salts in gel-coated polymer electrolyte for advanced lithium battery Kum KS, Song MK, Kim YT, Kim HS, Cho BW, Rhee HW |
289 - 293 |
Study on ionic transport mechanism and interactions between salt and polymer chain in PAN based solid polymer electrolytes containing LiCF3SO3 Yoon HK, Chung WS, Jo NJ |
295 - 300 |
Effect of salt species on electrochemical properties of gel-type polymer electrolyte based on chemically crosslinking rubber Lee KY, Chung WS, Jo NJ |
301 - 304 |
Lithium ion conductivity of blend polymer electrolytes based on borate polymers containing fluoroalkane dicarboxylate and poly(ethylene oxide) Aoki T, Konno A, Fujinami T |
305 - 309 |
Preparation and transport properties of novel lithium ionic liquids Shobukawa H, Tokuda H, Tabata S, Watanabe M |
311 - 316 |
The polymer electrolyte based on polysiloxane containing both alkyl cyanide and oligo ethylene oxide pendants Lee YS, Song GS, Kang Y, Suh DH |
317 - 321 |
Electrochemical characteristics of TMPTA- and TMPETA-based gel polymer electrolyte Kim SI, Kim HS, Na SH, Moon SI, Kim YJ, Jo NJ |
323 - 326 |
Cycling performances of Li/LiCoO2 cell with polymer-coated separator Jeong YB, Kim DW |
327 - 330 |
Spectroscopic investigation of the gel polymer electrolytes based on methyl methacrylate-styrene copolymers Jo SI, Lee S, Jeong YB, Kim DW, Sohn HJ |
331 - 334 |
Gel polymer electrolyte nanocomposites PEGDA with Mg-Al layered double hydroxides Cho MS, Shin B, Choi SD, Lee Y, Song KG |
335 - 338 |
Ionic conductivity studies of polymeric electrolytes containing lithium salt with plasticizer Cha EH, Macfarlane DR, Forsyth M, Lee CW |
339 - 343 |
Electrospun PVDF nanofiber web as polymer electrolyte or separator Choi SS, Lee YS, Joo CW, Lee SG, Park JK, Han KS |
345 - 349 |
Ionic conductivity and lithium ion transport characteristics of gel-type polymer electrolytes using lithium p-[methoxy oligo(ethyleneoxy)] benzenesulfonates Heo Y, Kang YK, Han K, Lee C |
351 - 356 |
Ionic conductivity and electrochemical properties of cross-linked poly [siloxane-g-oligo(ethylene oxide)] gel-type polymer electrolyte Lee J, Kang Y, Suh DH, Lee C |
357 - 361 |
A study on PVdF-based SiO2-containing composite gel-type polymer electrolytes for lithium batteries Wachtler M, Ostrovskii D, Jacobsson P, Scrosati B |
363 - 366 |
Preparation of micro-porous gel polymer for lithium ion polymer battery Kim JY, Kim SK, Lee SJ, Lee SY, Lee HM, Ahn S |
367 - 370 |
Thin-film type Li-ion battery, using a polyethylene separator grafted with glycidyl methacrylate Ko JM, Min BG, Kim DW, Ryu KS, Kim KM, Lee YG, Chang SH |
371 - 374 |
Characteristics of perovskite (Li0.5La0.5)TiO3 solid electrolyte thin films grown by pulsed laser deposition for rechargeable lithium microbattery Ahn JK, Yoon SG |
375 - 378 |
Blended polymer electrolytes based on poly(lithium 4-styrene sulfonate) for the rechargeable lithium polymer batteries Park CH, Sun YK, Kim DW |
379 - 383 |
Effect of binder polymer structures used in composite cathodes on interfacial charge transfer processes in lithium polymer batteries Seki S, Tabata S, Matsui S, Watanabe M |
385 - 390 |
Mechanism of electrochemical performance decay in LiCoO2 aged at high voltage Yazami R, Ozawa Y, Gabrisch H, Fultz B |
391 - 395 |
Effect of carbon substrate on SEI composition and morphology Peled E, Golodnitsky D, Ulus A, Yufit V |
397 - 403 |
The cathode-electrolyte interface in the Li-ion battery Edstrom K, Gustafsson T, Thomas JO |
405 - 409 |
CuxFeyV2O5 xerogel cathodes for lithium secondary batteries Choi JH, Park HK |
411 - 416 |
Electrochemistry and local structure of nano-sized Li4/3Me5/3O4 (Me=Mn, Ti) spinels Julien CM, Zaghib K |
417 - 420 |
Thin-film iron sulfide cathodes for lithium and Li-ion/polymer electrolyte microbatteries Yufit V, Freedman K, Nathan M, Burstein L, Golodnitsky D, Peled E |
421 - 426 |
New approach for synthesis of carbon-mixed LiFePO4 cathode materials Konstantinov K, Bewlay S, Wang GX, Lindsay M, Wang JZ, Liu HK, Dou SX, Ahn JH |
427 - 430 |
Electrochemical characteristics of LiNi0.5-xMn0.5-xCo2xO2 (0 < x <= 0.1) prepared by spray dry method Li DC, Noguchi H, Yoshio M |
431 - 434 |
Synthesis and electrochemical properties of 5 V spinel LiNi0.5Mn1.5O4 cathode materials prepared by ultrasonic spray pyrolysis method Park SH, Sun YK |
435 - 441 |
Preparation and properties of spherical LiNi0.75Co0.25O2 as a cathode for lithium-ion batteries Yao C, Wang GX, Tian JP, Konstantinov K, Liu HK |
443 - 447 |
Physical and electrochemical properties of doped lithium iron phosphate electrodes Wang GX, Bewlay SL, Konstantinov K, Liu HK, Dou SX, Ahn JH |
449 - 452 |
A new synthetic route of LiNi0.5Mn0.5O2 as the cathode material of secondary lithium batteries Na SH, Kim HS, Moon SI |
453 - 459 |
New preparation method and electrochemical property of LiMn2O4 electrode Son JT, Kim HG, Park YJ |
461 - 466 |
Structure characterization and electrochemical properties of RF sputtered lithium nickel cobalt oxide thin films Liao CL, Lee YH, Yu HC, Fung KZ |
467 - 471 |
Fabrication of LiCoO2 films for lithium rechargeable microbattery in an aqueous solution by electrochemical reflux method Lee JH, Han KS, Lee BJ, Seo SI, Yoshimura M |
473 - 478 |
Acetate self-mixing and direct thermal reaction for preparation of LiCoO2 Jung BY, Kang HK, Jeong IS, Han KS, Lee Y, Choo J, Ryu KS |
479 - 483 |
Acetate self-mixing and direct thermal reaction for preparation of LiNi0.7Co0.3O2 Lee SW, Jung BY, Han KS, Lee Y, Kim D, Kim MG, Ryu KS, Kang EY, Jeong JH |
485 - 489 |
Characterization of Ag-doped vanadium oxide (AgxV2O5) thin film for cathode of thin film battery Hwang HS, Oh SH, Kim HS, Cho WI, Cho BW, Lee DY |
491 - 494 |
Solid-state NMR studies of Al-doped and Al2O3-coated LiCoO2 Lee Y, Woo AJ, Han KS, Ryu KS, Sohn D, Kim D, Lee H |
495 - 499 |
Effects of the Li :(Mn+ Co+Ni) molar ratio on the electrochemical properties of LiMn1/3Co1/3Ni1/3O2 cathode material Todorov YM, Numata K |
501 - 504 |
Ni and oxygen K-edge XAS investigation into the chemical bonding for lithiation of LiyNi1-xAlxO2 cathode material Kim MG, Sung NE, Shin HJ, Shin NS, Ryu KS, Yo CH |
505 - 509 |
Freeze drying synthesis of LiNi0.5Mn0.5O2 cathode materials Shlyakhtin OA, Yoon YS, Choi SH, Oh YJ |
511 - 516 |
Characterization of nanocrystalline HT-LiCoO2 cathode materials for secondary lithium batteries Shlyakhtin OA, Choi SH, Yoon YS, Oh YJ |
517 - 522 |
Electrochemical characteristics of tin-coated MCMB graphite as anode in lithium-ion cells Wang GX, Yao J, Liu HK, Dou SX, Ahn JH |
523 - 529 |
Electrochemical characteristics of silver- and nickel-coated synthetic graphite prepared by a gas suspension spray coating method for the anode of lithium secondary batteries Choi WC, Byun D, Lee JK, Cho BW |
531 - 534 |
Improvement in lithium cycling efficiency by using lithium powder anode Kim JS, Yoon WY |
535 - 539 |
Surface characterization of emulsified lithium powder electrode Hong ST, Kim JS, Lim SJ, Yoon WY |
541 - 545 |
Observation of dendritic growth on Li powder anode using optical cell Kim WS, Yoon WY |
547 - 552 |
Fabrication and characterization of SnO2-RuO2 composite anode thin film for lithium ion batteries Choi SH, Kim JS, Yoon YS |
553 - 559 |
The electrochemical capacities and cycle retention of electrochemically deposited Cu2O thin film toward lithium Lee YH, Leu IC, Chang ST, Liao CL, Fung KZ |
561 - 564 |
Film packed lithium-ion battery with polymer stabilizer Satoh M, Nakahara K |
565 - 569 |
Self-assembled organic/inorganic hybrids as membrane materials Mauritz KA, Mountz DA, Reuschle DA, Blackwell RI |
571 - 575 |
Properties of the reinforced composite membranes formed by melt soluble ion conducting polymer resins for PEMFCs Ahn SY, Lee YC, Ha HY, Hong SA, Oh IH |
577 - 581 |
Characteristics of the Nafion (R) - impregnated polycarbonate composite membranes for PEMFCs Kim KH, Ahn SY, Oh IH, Ha HY, Hong SA, Kim MS, Lee Y, Lee YC |
583 - 588 |
Characteristics of PVdF copolymer/Nafion blend membrane for direct methanol fuel cell (DMFC) Cho KY, Eom JY, Jung HY, Choi NS, Lee YM, Park JK, Choi JH, Park KW, Sung YE |
589 - 593 |
Proton conducting semi-IPN based on Nafion and crosslinked poly(AMPS) for direct methanol fuel cell Cho KY, Jung HY, Shin SS, Choi NS, Sung SJ, Park JK, Choi JH, Park KW, Sung YE |
595 - 599 |
High proton-conducting Nafion/calcium hydroxyphosphate composite membranes for fuel cells Park YS, Hatae T, Itoh H, Jang MY, Yamazaki Y |
601 - 605 |
Optimum Nafion content in PEM fuel cell electrodes Sasikumar G, Ihm JW, Ryu H |
607 - 610 |
Electro-oxidation of methanol diffused through proton exchange membrane on Pt surface: crossover rate of methanol Jung I, Kim D, Yun Y, Chung S, Lee H, Tak Y |
611 - 615 |
A novel proton conductor based on ternary polymer blend: preparation and optimization of composition Umeda M, Yamada A, Affoune AM, Uchida I |
617 - 620 |
Selective modification of block copolymers as proton exchange membranes Yang JE, Lee JS |
621 - 625 |
Non-aqueous proton conducting polymer gel electrolytes Singh HP, Sekhon SS |
627 - 631 |
Proton conducting borosiloxane-poly(ether-sulfone) composite electrolyte Fujinami T, Miyano D, Okamoto T, Ozawa M, Konno A |
633 - 638 |
Proton exchange membranes based on sulfonimide for fuel cell applications Rahman K, Aiba G, Susan A, Watanabe M |
639 - 643 |
Characterization of polymer-layered silicate nanocomposite membranes for direct methanol fuel cells Song MK, Park SB, Kim YT, Kim KH, Min SK, Rhee HW |
645 - 648 |
Nafion/ZrSPP composite membrane for high temperature operation of PEMFCs Kim YT, Song MK, Kim KH, Park SB, Min SK, Rhee HW |
649 - 652 |
Electrical and thermal properties of poly(vinylidene fluoride-hexafluoropropylene)-based proton conducting gel-electrolytes Choi BK, Park SH, Joo SW, Gong MS |
653 - 657 |
Polymer composite membrane incorporated with a hygroscopic material for high-temperature PEMFC Kwak SH, Yang TH, Kim CS, Yoon KH |
659 - 662 |
Investigation on methanol permeability of Nafion modified by self-assembled clay-nanocomposite multilayers Kim DW, Choi HS, Lee C, Blumstein A, Kang Y |
663 - 666 |
Application of MEMS technology to micro fuel cells Yamazaki Y |
667 - 672 |
Preparation of the electrode for high temperature PEFCs using novel polymer electrolytes based on organic/inorganic nanohybrids Nishikawa O, Sugimoto T, Nomura S, Doyama K, Miyatake K, Uchida H, Watanabe M |
673 - 676 |
Effect of the ionomers in the electrode on the performance of PEMFC under non-humidifying conditions Ahn SY, Lee YC, Ha HY, Hong SA, Oh IH |
677 - 683 |
Two-phase flow analysis in a cathode duct of PEFCs Yuan JL, Sunden B |
685 - 691 |
Preparation and characterization of carbon nanotibers as catalyst support material for PEMFC Yuan FL, Yu HK, Ryu HJ |
693 - 697 |
Investigation of hydrogen adsorption behaviours in the presence of methanol and dissolved oxygen using electrochemical quartz crystal microbalance Kim D, Jung I, Lee H, Oh I, Ha H, Tak Y |
699 - 704 |
Quantitative analysis of irreversibilities causes voltage drop in fuel cell (simulation & modeling) Ghadamian H, Saboohi Y |
705 - 708 |
Medium temperature operation of fuel cells using inorganic-organic hybrid films from 3-glycidoxypropyltrimethoxysilane and orthophosphoric acid Tadanaga K, Yoshida H, Matsuda A, Minami T, Tatsumisago M |
709 - 712 |
Effects of channel configurations of flow field plates on the performance of a PEMFC Yoon YG, Lee WY, Park GG, Yang TH, Kim CS |
713 - 718 |
Optimization of bifunctional electrocatalyst for PEM unitized regenerative fuel cell Yim SD, Lee WY, Yoon YG, Sohn YJ, Park GG, Yang TH, Kim CS |
719 - 723 |
Development of a micro fuel processor for PEMFCs Seo DJ, Yoon WL, Yoon YG, Park SH, Park GG, Kim CS |
725 - 730 |
A mathematical model and optimization of the cathode catalyst layer structure in PEM fuel cells Wang QP, Song DT, Navessin T, Holdcroft S, Liu ZS |
731 - 737 |
Numerical study of PEM fuel cell cathode with non-uniform catalyst layer Song DT, Wang QP, Liu ZS, Navessin T, Holdcroft S |
739 - 744 |
First-principle study on structures and electronic properties of aluminum nanowire wrapped in carbon nanotube Kawakami Y, Nojima Y, Doi K, Nakamura K, Tachibana A |
745 - 748 |
Preparation of mesoporous cerium oxide templated by tri-block copolymer for solid oxide fuel cell Hung IM, Wang HP, Lai WH, Fung KZ, Hon MH |
749 - 754 |
Photodeposition of Pt on composite films of Nafion and conducting polymer and O-2 reduction using the composite film-coated electrode Nakano H, Tachibana Y, Kuwabata S |
755 - 759 |
On the change of a Ni3Al phase in a Ni-12 wt. %Al MCFC anode during partial oxidation and reduction stages of sintering Lee D, Lee I, Chang S |
761 - 768 |
A study on self-humidifying PEMFC using Pt-ZrP-Nafion composite membrane Lee HK, Kim JI, Park JH, Lee TH |
769 - 775 |
A novel direct deposition of Pt catalysts on Nafion impregnated with polypyrrole for PEMFC Park JH, Kim JH, Lee HK, Lee TH, Joe YI |
777 - 780 |
The electrical and physical properties of alternative material bipolar plate for PEM fuel cell system Oh MH, Yoon YS, Park SG |
781 - 785 |
The effect of pretreatment methods on the performance of passive DMFCs Kho BK, Oh IH, Hong SA, Ha HY |
787 - 790 |
Methanol electro-oxidation and direct methanol fuel cell using Pt/Rh and Pt/Ru/Rh alloy catalysts Choi JH, Park KW, Park IS, Nam WH, Sung YE |
791 - 794 |
Studies on the anode catalysts of carbon nanotube for DMFC Han KI, Lee JS, Park SO, Lee SW, Park YW, Kim H |
795 - 799 |
Fabrication of all-polymer micro-DMFCs using UV-sensitive photoresist Cha HY, Choi HG, Nam JD, Lee Y, Cho SM, Lee ES, Lee JK, Chung CH |
801 - 806 |
Electrochemical studies of DMFC anodes with different ionomer content Kim JH, Ha HY, Oh IH, Hong SA, Kim HN, Lee HI |
807 - 810 |
Performance and impedance under various catalyst layer thicknesses in DMFC Lee JS, Han KI, Park SO, Kim HN, Kim H |
811 - 816 |
Syntheses of perovskite oxides nanoparticles La1-xSrxMO3-delta (M = Co and Cu) as anode electrocatalyst for direct methanol fuel cell Yu HC, Fung KZ, Guo TC, Chang WL |
817 - 821 |
Preparation and characterization of carbon supported Pt and PtRu alloy catalysts reduced by alcohol for polymer electrolyte fuel cell Kim T, Takahashi M, Nagai M, Kobayashi K |
823 - 826 |
Ordered uniform porous carbons as a catalyst support in a direct methanol fuel cell Chai G, Yoon SB, Kang S, Choi JH, Sung YE, Ahn YS, Kim HS, Yu JS |
827 - 831 |
Organic radical battery: nitroxide polymers as a cathode-active material Nishide H, Iwasa S, Pu YJ, Suga T, Nakahara K, Satoh M |
833 - 835 |
Effect of cathode component on the energy density of lithium-sulfur battery Choi YS, Kim S, Choi SS, Han JS, Kim JD, Jeon SE, Jung BH |
837 - 841 |
Application of proton conducting polymeric electrolytes to electrochemical capacitors Morita M, Qiao JL, Yoshimoto N, Ishikawa M |
843 - 847 |
Poly(ethylenedioxythiophene) (PEDOT) as polymer electrode in redox supercapacitor Ryu KS, Lee YG, Hong YS, Park YJ, Wu XL, Kim KM, Kang MG, Park NG, Chang SH |
849 - 855 |
The role of cations of the electrolyte for the pseudocapacitive behavior of metal oxide electrodes, MnO2 and RuO2 Wen S, Lee JW, Yeo IH, Park J, Mho S |
857 - 862 |
EDLC characteristics of CNTs grown on nanoporous alumina templates Jung M, Kim HG, Lee JK, Joo OS, Mho S |
863 - 872 |
Electrochemical characteristics of activated carbon/Ppy electrode combined with P(VdF-co-HFP)/PVP for EDLC Kim KM, Hur JW, Jung S, Kang AS |
873 - 876 |
Capacitive performance of the composite electrodes consisted of polyaniline and activated carbons powder in a solid-like acid gel electrolyte Ko JM, Song R, Yu HJ, Yoon JW, Min BG, Kim DW |
877 - 881 |
Characteristics of supercapaitor electrodes of PBI-based carbon nanofiber web prepared by electrospinning Kim C, Park SH, Lee WJ, Yang KS |
883 - 887 |
Supercapacitor performances of activated carbon fiber webs prepared by electrospinning of PMDA-ODA poly(amic acid) solutions Kim C, Choi YO, Lee WJ, Yang KS |
889 - 892 |
The effect of solvent component on the discharge performance of Lithium-sulfur cell containing various organic electrolytes Kim S, Jung YJ, Lim HS |
893 - 897 |
Rechargeable lithium batteries, using sulfur-based cathode materials and Li2S-P2S5 glass-ceramic electrolytes Hayashi A, Ohtomo T, Mizuno F, Tadanaga K, Tatsumisago M |
899 - 901 |
Electrocatalytic activation of organosulfur redox reactions by Ag nanoparticles Park JE, Park SG, Oyama N |
903 - 906 |
Preparation and characterization of gel polymer electrolytes for solid state magnesium batteries Oh JS, Ko JM, Kim DW |
907 - 913 |
Preparation and electrochemical characterization of size controlled SnO2-RuO2 composite powder for monolithic hybrid battery Jeon YA, No KS, Choi SH, Ahn JP, Yoon YS |