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Selected Papers presented at the Second International Conference on Polymer Batteries and Fuel Cells (PBFC-2) - Preface Brodd RJ, McGrath JE |
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Sulfonated poly(ether ether ketone)-based composite membrane for polymer electrolyte membrane fuel cells Krishnan P, Park JS, Yang TH, Lee WY, Kim CS |
9 - 17 |
Direct methanol fuel cell membranes from Nafion-polybenzimidazole blends Wycisk R, Chisholm J, Lee J, Lin J, Pintauro PN |
18 - 26 |
Sulphonated poly(ether ether ketone) membranes for fuel cell application: Thermal and structural characterisation Carbone A, Pedicini R, Portale G, Longo A, D'Ilario L, Passalacqua E |
27 - 33 |
A new water-free proton conducting membrane for high-temperature application Lee SY, Scharfenberger G, Meyer WH, Wegner G |
34 - 40 |
Utilization of Pt/Ru catalysts in MEA for fuel cell application by breathing process of proton exchange membrane Yu KC, Kim WJ, Chung CH |
41 - 46 |
Electrochemical properties and cycle performance of electrospun poly(vinylidene fluoride)-based fibrous membrane electrolytes for Li-ion polymer battery Lee SW, Choi SW, Jo SM, Chin BD, Kim DY, Lee KY |
47 - 51 |
ZrO2-Nafion composite membranes for polymer electrolyte fuel cells (PEFCs) at intermediate temperature Sacca A, Gatto I, Carbone A, Pedicini R, Passalacqua E |
52 - 55 |
An NMR spectroscopic study of water and methanol transport properties in DMFC composite membranes: Influence on the electrochemical behaviour Baglio V, Arico AS, Antonucci V, Nicotera I, Oliviero C, Coppola L, Antonucci PL |
56 - 59 |
The effect of sulfonated poly(ether ether ketone) as an electrode binder for direct methanol fuel cell (DMFC) Jung HY, Cho KY, Sung KA, Kim WK, Park JK |
60 - 65 |
Novel proton conducting polymer electrolytes based on polyparabanic acid doped with H3PO4 for high temperature fuel cell Aihara Y, Sonai A |
66 - 70 |
Depression of methanol-crossover using multilayer proton conducting membranes prepared by layer-by-layer deposition onto a porous polyethylene film Son HD, Cho MS, Nam JD, Cho SM, Chung CH, Choi HG, Lee Y |
71 - 75 |
Electro-oxidation of methanol and formic acid on PtRu and PtAu for direct liquid fuel cells Choi JH, Jeong KJ, Dong Y, Han J, Lim TH, Lee JS, Sung YE |
76 - 81 |
PEM fuel cell electrocatalyst durability measurements Borup RL, Davey JR, Garzon FH, Wood DL, Inbody MA |
82 - 86 |
PtRh alloy nanoparticle electrocatalysts for oxygen reduction for use in direct methanol fuel cells Park KW, Han DS, Sung YE |
87 - 92 |
An algorithm for optimum design and macro-model development in PEMFC with exergy and cost considerations Ghadamian H, Bakhtary K, Namini SS |
93 - 97 |
The preparation of Pt/C catalysts using various carbon materials for the cathode of PEMFC Kim M, Park JN, Kim H, Song S, Lee WH |
98 - 102 |
Suppression of the methanol crossover by hydrogels in passively operated flat-pack type DMFCs and its application for the power source of cellular phone Kim WJ, Choi HG, Lee YK, Nam JD, Cho SM, Chung CH |
103 - 106 |
Fuel cells using dimethyl ether Yoo JH, Choi HG, Chung CH, Cho SM |
107 - 112 |
Study on the morphology of CsH2PO4 using the mixture of methanol and polyols Ahn YS, Mangani IR, Park CW, Kim J |
113 - 118 |
Adoption of nano-materials for the micro-layer in gas diffusion layers of PEMFCs Park GG, Sohn YJ, Yim SD, Yang TH, Yoon YG, Lee WY, Eguchi K, Kim CS |
119 - 124 |
Development of compact fuel processor for 2 kW class residential PEMFCs Seo YT, Seo DJ, Jeong JH, Yoon WL |
125 - 134 |
First-principle molecular-dynamics study of hydrogen adsorption on an aluminum-doped carbon nanotube Nakano H, Ohta H, Yokoe A, Doi K, Tachibana A |
135 - 143 |
Electrochemical and solid-state NMR studies on LiCoO2 coated with Al2O3 derived from carboxylate-alumoxane Fey GTK, Kao HM, Muralidharan P, Kumar TP, Cho YD |
144 - 150 |
Effect of Fe2P on the electron conductivity and electrochemical performance of LiFePO4 synthesized by mechanical alloying using Fe3+ raw material Kim CW, Park JS, Lee KS |
151 - 157 |
A two-dimensional modeling of a lithium-polymer battery Kwon KH, Shin CB, Kang TH, Kim CS |
158 - 165 |
Electrochemical characteristics of room temperature Li/FeS2 batteries with natural pyrite cathode Choi JW, Cheruvally G, Ahn HJ, Kim KW, Ahn JH |
166 - 172 |
Eutectic self-mixing method for the preparation of LiMn2O4 without any artificial mixing procedures Kang HK, Ahn W, Lee SG, Han KS, Song JH, Kwon OH, Kang EY |
173 - 179 |
Study on the LLT solid electrolyte thin film with LiPON interlayer intervening between LLT and electrodes Lee JM, Kim SH, Tak Y, Yoon YS |
180 - 184 |
Optimization of carbon coatings on LiFePO4 Doeff MM, Wilcox JD, Kostecki R, Lau G |
185 - 190 |
In situ XRD studies of the structural changes of ZrO2-coated LiCoO2 during cycling and their effects on capacity retention in lithium batteries Chung KY, Yoon WS, Lee HS, McBreen J, Yang XQ, Oh SH, Ryu WH, Lee JL, Won IC, Cho BW |
191 - 195 |
Electrolyte loss and dimensional change of the negative electrode in Li powder secondary cell Chung JH, Kim WS, Yoon WY, Min SW, Cho BW |
196 - 200 |
Effect of ultrasonic treatment and temperature on nanocrystalline TiO2 Kim DH, Ryu HW, Moon JH, Kim J |
201 - 206 |
Discharge behavior of lithium/sulfur cell with TEGDME based electrolyte at low temperature Ryu HS, Ahn HJ, Kim KW, Ahn JH, Cho KK, Nam TH, Kim JU, Cho GB |
207 - 210 |
Characterization of LiMn2O4-coated LiCoO2 film electrode prepared by electrostatic spray deposition Yoon WS, Chung KY, Nam KW, Kim KB |
211 - 214 |
Formation and characterization of Cu-Si nanocomposite electrodes for rechargeable Li batteries Ahn HJ, Kim YS, Kim WB, Sung YE, Seong TY |
215 - 218 |
Silicon/graphite composites as an anode material for lithium ion batteries Yoshio M, Tsumura T, Dimov N |
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Time-resolved XRD study on the thermal decomposition of nickel-based layered cathode materials for Li-ion batteries Yoon WS, Chung KY, Balasubramanian M, Hanson J, McBreen J, Yang XQ |
223 - 228 |
Li2O-B2O3-P2O5 solid electrolyte for thin film batteries Cho KI, Lee SH, Cho KH, Shin DW, Sun YK |
229 - 233 |
Electrochemical characterization of blend polymer electrolytes based on poly(oligo[oxyethylene]oxyterephthaloyl) for rechargeable lithium metal polymer batteries Oh JS, Kim SH, Kang Y, Kim DW |
234 - 237 |
Changes in electronic structure of the electrochemically Li-ion deintercalated LiNiO2 system investigated by soft X-ray absorption spectroscopy Yoon WS, Chung KY, McBreen J, Fischer DA, Yang XQ |
238 - 242 |
Nonflammable gel electrolyte containing alkyl phosphate for rechargeable lithium batteries Yoshimoto N, Niida Y, Egashira M, Morita M |
243 - 246 |
Towards a high performing lithium polymer battery system (VARTA PoLiFlex (TM)) Ilic D, Perner A, Wohrle T, Haug P, Pompetzki M, Wurm C |
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Preparation and characterization of new microporous stretched membrane for lithium rechargeable battery Seol WH, Lee YM, Park JK |
252 - 257 |
Solid polymer electrolytes based on comblike polymers Itoh T, Mitsuda Y, Nakasaka K, Uno T, Kubo M, Yamamoto O |
258 - 263 |
Morphological differences between lithium powder and lithium foil electrode during discharge/charge Kim JS, Yoon WY, Kim BK |
264 - 268 |
Submicroporous/microporous and compatible/incompatible multi-functional dual-layer polymer electrolytes and their interfacial characteristics with lithium metal anode Lee YG, Kyhm K, Choi NS, Ryu KS |
269 - 273 |
Ionic conductance of PDMAEMA/PEO polymeric electrolyte containing lithium salt mixed with plasticizer Cha EH, Lim SA, Lee CW, Macfarlane DR |
274 - 277 |
Sub-micron LiCoO2 manufactured in a single synthetic step using eutectic self-mixing method Lee SW, Lee SG, Han KS |
278 - 283 |
Preparation of LiMn2O4 at the low temperature of 250 degrees C using eutectic self-mixing method Na JW, Kwon JY, Han KS |
284 - 288 |
Used lithium ion rechargeable battery recycling using Etoile-Rebatt technology Ra DI, Han KS |
289 - 293 |
Mechanochemical synthesis of hybrid electrolytes from the Li2S-P2S5 glasses and polyethers Hayashi A, Harayama T, Mizuno F, Tatsumisago M |
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Synthesis of electrode materials by reduction of KMnO4 with NiCl2 center dot 6H(2)O in aqueous solutions Kim SH, Kim SJ, Kim J |
300 - 303 |
Study on the electrochemical characteristics of quasi-solid-state electric double layer capacitors assembled with sulfonated poly(ether ether ketone) Kim DW, Ko JM, Kim WJ, Kim JH |
304 - 308 |
Improved electrochemical capacitive characteristics of the carbon nanotubes grown on the alumina templates with high pore density Wen S, Mho SI, Yeo IH |
309 - 315 |
Factors in forming CO andCO(2) over a cermet of Ni-gadolinia-doped ceria with relation to direct methane SOFCs Huang TJ, Wang CH |
316 - 322 |
A microwave-induced solution-polymerization synthesis of doped LaGaO3 powders Zhai YL, Ye C, Xiao JZ, Dai L |
323 - 329 |
Fabrication and evaluation of Pt-Fe alloys as methanol tolerant cathode materials for direct methanol fuel cells Yuan W, Scott K, Cheng H |
330 - 338 |
Combinatorial screening of thin film electrocatalysts for a direct methanol fuel cell anode Cooper JS, McGinn PJ |
339 - 348 |
Water-stable crosslinked sulfonated polyimide-silica nanocomposite containing interpenetrating polymer network Lee CH, Hwang SY, Sohn JY, Park HB, Kim JY, Lee YM |
349 - 356 |
Preparation of low Pt loading electrodes on Nafion (Na+)-bonded carbon layer with galvanostatic pulses for PEMFC application Lee J, Seo J, Han KK, Kim H |
357 - 363 |
Effect of carbon loading in microporous layer on PEM fuel cell performance Park S, Lee JW, Popov BN |
364 - 370 |
Catalytic activities of non-noble metals for hydrogen generation from aqueous ammonia-borane at room temperature Xu Q, Chandra M |
371 - 375 |
Effect of support on the activity of Pd electrocatalyst for ethanol oxidation Zheng HT, Li YL, Chen SX, Shen PK |
376 - 381 |
Carbon nanotubes modified with catalyst - Promising material for fuel cells Danilov MO, Melezhyk AV |
382 - 385 |
Protonic battery based on a plasticized chitosan-NH4NO3 solid polymer electrolyte Ng LS, Mohamad AA |
386 - 391 |
Direct methanol fuel cell performance of Nafiono((R))/poly(vinyl alcohol) blend membranes DeLuca NW, Elabd YA |
392 - 397 |
Nano-composite materials for high-performance and durability of solid oxide fuel cells Kim SD, Moon H, Hyun SH, Moon J, Kim J, Lee HW |
398 - 402 |
Clay as a dispersion agent in anode catalyst layer for PEMFC Pai YH, Ke JH, Chou CC, Lin JJ, Zen JM, Shieu FS |
403 - 408 |
Performance of Pt-Co/C prepared by the selective deposition of Co on Pt as a cathode in PEMFCs Seo SJ, Joh HI, Kim HT, Moon SH |
409 - 414 |
Sintering and electrical properties of Ce0.8Y0.2O1.9 powders prepared by citric acid-nitrate low-temperature combustion process Xu HM, Yan HG, Chen ZH |
415 - 419 |
Pd electrocatalyst supported on carbonized TiO2 nanotube for ethanol oxidation Hu FP, Ding FW, Song SQ, Shen PK |
420 - 432 |
Non-linear dynamic modeling of proton exchange membrane fuel cell Haddad A, Bouyekhf R, El Moudni A, Wack M |
433 - 439 |
Fabrication and properties of hybrid membranes based on salts of heteropolyacid, zirconium phosphate and polyvinyl alcohol Helen M, Viswanathan B, Murthy SS |
440 - 449 |
Development and performance analysis of a H-2/air micro PEM fuel cell stack Hsieh SS, Feng CL, Huang CF |
450 - 459 |
Thermal-fluid transports in a five-layer membrane-electrode assembly of a PEM fuel cell Hwang JJ, Chao CH, Wu W |
460 - 466 |
A modeling study on concentration overpotentials of a reversible solid oxide fuel cell Ni M, Leung MKH, Leung DC |
467 - 479 |
Performance comparison of two fuel cell hybrid buses with different powertrain and energy management strategies Ouyang MG, Xu LF, Li JQ, Lu LG, Gao DW, Me QC |
480 - 489 |
Investigation of gas diffusion media inside PEMFC using CFD modeling Shimpalee S, Beuscher U, Van Zee JW |
490 - 499 |
Comparison between pressurized design and ambient pressure design of hybrid solid oxide fuel cell-gas turbine systems Park SK, Kim TS |
500 - 508 |
An investigation into polypyrrole-coated 316L stainless steel as a bipolar plate material for PEM fuel cells Wang Y, Northwood DO |
509 - 513 |
Testing and evaluation of aluminum coated bipolar plates of pern fuel cells operating at 70 degrees C Hung Y, El-Khatib KM, Tawfik H |
514 - 522 |
System modelling and integration of an intermediate temperature solid oxide fuel cell and ZEBRA battery for automotive applications Brett DJL, Aguiar P, Brandon NP |
523 - 531 |
Dynamic modeling of a hybrid system of the solid oxide fuel cell and recuperative gas turbine Zhang XW, Li J, Li GJ, Feng ZP |
532 - 537 |
PEM fuel cell open circuit voltage (OCV) in the temperature range of 23 degrees C to 120 degrees C Zhang JL, Tang YH, Song CJ, Zhang JJ, Wang HJ |
538 - 546 |
Performance comparison of autothermal reforming for liquid hydrocarbons, gasoline and diesel for fuel cell applications Kang I, Bae J, Bae G |
547 - 554 |
Catalytic activity of Pt-Au/CeO2 catalyst for the preferential oxidation of CO in H-2-rich stream Monyanon S, Pongstabodee S, Luengnaruemitchai A |
555 - 559 |
Depression of hydrogen evolution during operation of a direct borohydride fuel cell Li ZP, Liu BH, Zhu JK, Suda S |
560 - 566 |
Optimized electrochemical performance of LiFePO4 at 60 degrees C with purity controlled by SQUID magnetometry Zaghib K, Ravet N, Gauthier M, Gendron F, Mauger A, Goodenough JB, Julien CM |
567 - 572 |
Aromatic isocyanate as a new type of electrolyte additive for the improved performance of Li-ion batteries Zhang SS |
573 - 577 |
Polyaniline nanofibres as a cathode material for rechargeable lithium-polymer cells assembled with gel polymer electrolyte Sivakkumar SR, Oh JS, Kim DW |
578 - 583 |
Modeling self-discharge of Li/SOCl2 cells Spotnitz RM, Yeduvaka GS, Nagasubramanian G, Jungst R |
584 - 590 |
The novel state of charge estimation method for lithium battery using sliding mode observer Kim IS |
591 - 597 |
Fibrous zinc anodes for high power batteries Zhang XG |
598 - 603 |
Role of TiB2 and Bi2O3 additives on the rechargeability of MnO2 in alkaline cells Raghuveer V, Manthiram A |
604 - 615 |
Power quality improvement of a stand-alone power system subjected to various disturbances Lone SA, Mufti MUD |
616 - 622 |
A modified activated carbon aerogel for high-energy storage in electric double layer capacitors Fang BZ, Binder L |