389 - 399 |
Ageing of anode-supported solid oxide fuel cell stacks including thermal cycling, and expansion behaviour of MgO-NiO anodes Van Herle J, Perednis D, Nakamura K, Diethelm S, Zahid M, Asianides A, Somekawa T, Baba Y, Horiuchi K, Matsuzaki Y, Yoshimoto M, Bucheli O |
400 - 412 |
Fundamental mechanisms limiting solid oxide fuel cell durability Yokokawa H, Tu HY, Iwanschitz B, Mai A |
413 - 421 |
Polarization study of a PEMFC with four reference electrodes at hydrogen starvation conditions Baumgartner WR, Parz P, Fraser SD, Wallnofer E, Hacker V |
422 - 428 |
The impact of air contaminants on PEMFC performance and durability Nagahara Y, Sugawara S, Shinohara K |
429 - 440 |
Analysis of a PEMFC durability test under low humidity conditions and stack behaviour modelling using experimental design techniques Wahdame B, Candusso D, Harel F, Francois X, Pera MC, Hissel D, Kauffmann JM |
441 - 448 |
Design of an 80 kWe PEM fuel cell system: Scale up effect investigation Bonnet C, Didierjean S, Guillet N, Besse S, Colinart T, Carre P |
449 - 461 |
Diagnosis methods dedicated to the localisation of failed cells within PEMFC stacks Tian G, Wasterlain S, Endichi I, Candusso D, Harel F, Francois X, Pera MC, Hissel D, Kauffmann JM |
462 - 468 |
Corrosion of metallic stack components in molten carbonates: Critical issues and recent findings Frangini S |
469 - 475 |
Durability study and lifetime prediction of baseline proton exchange membrane fuel cell under severe operating conditions Marrony M, Barrera R, Quenet S, Ginocchio S, Montelatici L, Aslanides A |
476 - 481 |
Silver infiltrated La0.6Sr0.4Co0.2Fe0.8O3 cathodes for intermediate temperature solid oxide fuel cells Sakito Y, Hirano A, Imanishi N, Takeda Y, Yamamoto O, Liu Y |
482 - 488 |
Characterization and electrochemical performances of Ba2-xSrxFeO4+delta as a novel cathode material for intermediate-temperature solid oxide fuel cells Jin C, Liu J, Zhang YH, Sui J, Guo WM |
489 - 495 |
Application of nitrogen-rich amino acids to active site generation in oxygen reduction catalyst Maruyama J, Fukui N, Kawaguchi M, Abe I |
496 - 502 |
Steam reforming on Ni-samaria-doped ceria cermet anode for practical size solid oxide fuel cell at intermediate temperatures Kawano M, Matsui T, Kikuchi R, Yoshida H, Inagaki T, Eguchi K |
503 - 509 |
Preparation and properties of BaxSr1-xCoyFe1-yO3-delta cathode material for intermediate temperature solid oxide fuel cells Zhao HL, Shen W, Zhu ZM, Li X, Wang ZF |
510 - 514 |
Ordered silicon nanocones as a highly efficient platinum catalyst support for direct methanol fuel cells Tiwari JN, Chen TM, Pan FM, Lin KL |
515 - 519 |
A high performance anion exchange membrane-type ammonia borane fuel cell Zhang XB, Yan JM, Han S, Shioyama H, Yasuda K, Kuriyama N, Xu Q |
520 - 523 |
Effects of NaOH addition on performance of the direct hydrazine fuel cell Yin WX, Li ZP, Zhu JK, Qin HY |
524 - 530 |
Effect of conducting composite polypyrrole/polyaniline coatings on the corrosion resistance of type 304 stainless steel for bipolar plates of proton-exchange membrane fuel cells Ren YJ, Zeng CL |
531 - 539 |
Facilitating mass transport in gas diffusion layer of PEMFC by fabricating micro-porous layer with dry layer preparation Chen J, Xu HF, Zhang HM, Yi BL |
540 - 545 |
Stress field and failure probability analysis for the single cell of planar solid oxide fuel cells Zhang T, Zhu QS, Huang WL, Xie ZH, Xin XS |
546 - 557 |
Robust design of battery/fuel cell hybrid systems-methodology for surrogate models of Pt stability and mitigation through system controls Chandrasekaran R, Bi W, Fuller TF |
558 - 564 |
Fast and exergy efficient start-up of micro-solid oxide fuel cell systems by using the reformer or the post-combustor for start-up heating Stutz MJ, Grass RN, Loher S, Stark WJ, Poulikakos D |
565 - 579 |
Passively operated vapor-fed direct methanol fuel cells for portable applications Eccarius S, Krause F, Beard K, Agert C |
580 - 584 |
Ag-polytetrafluoroethylene composite coating on stainless steel as bipolar plate of proton exchange membrane fuel cell Fu Y, Hou M, Xu HF, Hou ZJ, Ming PW, Shao ZG, Yi BL |
585 - 588 |
High-performance cathode-supported SOFCs prepared by a single-step co-firing process Liu MF, Dong DH, Zhao F, Gao JF, Ding D, Liu XQ, Meng GY |
589 - 593 |
Simple fabrication of micro-solid oxide fuel cell supported on metal substrate Joo JH, Choi GM |
594 - 598 |
Studies of residual stresses in planar solid oxide fuel cells Malzbender J, Fischer W, Steinbrech RW |
599 - 602 |
Shunt current calculation of fuel cell stack using Simulink (R) Schaeffer JA, Chen LD, Seaba JP |
603 - 608 |
Comparison of microchannel dimensions for air-breathing polymer exchange membrane microfuel cells Spiegel CS, Agarwal R, Bhansali S |
609 - 615 |
Studies on a two-staged micro-combustor for a micro-reformer integrated with a micro-evaporator Kim KB, Kwon OC |
616 - 620 |
Carbon-supported cobalt catalyst for hydrogen generation from alkaline sodium borohydride solution Xu DY, Dai P, Liu XM, Cao CQ, Guo QJ |
621 - 625 |
All solid-state battery with sulfur electrode and thio-LISICON electrolyte Kobayashi T, Imade Y, Shishihara D, Homma K, Nagao M, Watanabe R, Yokoi T, Yamada A, Kanno R, Tatsumi T |
626 - 629 |
Rate-controlling species for the sintering of LiTi2(PO4)(3) Wolfenstine J, Foster D, Read J, Allen JL |
630 - 638 |
Active (air-cooled) vs. passive (phase change material) thermal management of high power lithium-ion packs: Limitation of temperature rise and uniformity of temperature distribution Sabbah R, Kizilel R, Selman JR, Al-Hallaj S |
639 - 641 |
Polydivinylferrocene surface modified electrode for measuring state-of-charge of lead-acid battery Lee T, Singh P, Baker MV, Issa TB |
642 - 652 |
Pseudocapacitive properties of electrochemically prepared nickel oxides on 3-dimensional carbon nanotube film substrates Nam KW, Kim KH, Lee ES, Yoon WS, Yang XQ, Ki KB |
653 - 653 |
SPEEK/epoxy resin composite membranes in situ polymerization for direct methanol fell cell usages (vol 165, pg 708, 2007) Fu TZ, Zhao CJ, Zhong SL, Zhang G, Shao K, Zhang HQ, Wang J, Na H |