9097 - 9106 |
A review of accelerated conditioning for a polymer electrolyte membrane fuel cell Yuan XZ, Zhang SS, Sun JC, Wang HJ |
9107 - 9116 |
A review of polymer electrolyte membrane fuel cell durability test protocols Yuan XZ, Li H, Zhang SS, Martin J, Wang HJ |
9117 - 9123 |
A novel CO-tolerant PtRu core-shell structured electrocatalyst with Ru rich in core and Pt rich in shell for hydrogen oxidation reaction and its implication in proton exchange membrane fuel cell Zhang L, Kim J, Chen HM, Nan FH, Dudeck K, Liu RS, Botton GA, Zhang JJ |
9124 - 9129 |
Investigation of shrinkage behavior of Ni-Fe bimetallic anode tube support and the densification of electrolyte using co-sintering temperature Liang B, Suzuki T, Hamamoto K, Yamaguchi T, Fujishiro Y, Awano M, Ingram BJ, Cater JD |
9130 - 9140 |
Chemical durability of Solid Oxide Fuel Cells: Influence of impurities on long-term performance Sasaki K, Haga K, Yoshizumi T, Minematsu D, Yuki E, Liu RR, Uryu C, Oshima T, Ogura T, Shiratori Y, Ito K, Koyama M, Yokomoto K |
9141 - 9147 |
Structure, chemical stability and mixed proton-electron conductivity in BaZr0.9-xPrxGd0.1O3-delta Magraso A, Frontera C, Gunnaes AE, Tarancon A, Marrero-Lopez D, Norby T, Haugsrud R |
9148 - 9153 |
Sr2Fe1.5Mo0.5O6-delta as a regenerative anode for solid oxide fuel cells Liu Q, Bugaris DE, Xiao GL, Chmara M, Ma SG, zur Loye HC, Amiridis MD, Chen FL |
9154 - 9163 |
Effect of sintering aids on the conductivity of BaCe(0.9)Ln(0.1)O(3-delta) Amsif M, Marrero-Lopez D, Ruiz-Morales JC, Savvin SN, Nunez P |
9164 - 9168 |
BaCo0.7Fe0.2Nb0.1O3-delta as cathode material for intermediate temperature solid oxide fuel cells Yang ZB, Yang CH, Xiong B, Han MF, Chen FL |
9169 - 9175 |
A microfabricated low cost enzyme-free glucose fuel cell for powering low-power implantable devices Oncescu V, Erickson D |
9176 - 9187 |
On the proton conductivity of Nafion-Faujasite composite membranes for low temperature direct methanol fuel cells Zhang ZH, Desilets F, Felice V, Mecheri B, Licoccia S, Tavares AC |
9188 - 9194 |
Degradation of the Pt/C air cathode in acidic solution examined by cyclic thermammetry Smith G, Burstein GT |
9195 - 9203 |
Investigation of oxygen reduction reaction kinetics on Sm0.5Sr0.5CoO3-delta cathode supported on Ce0.85Sm0.075Nd0.075O2-delta electrolyte Gao Z, Liu XM, Bergman B, Zhao Z |
9204 - 9212 |
Effect of stress on dissolution/precipitation of platinum: Implications concerning core-shell catalysts and cathode degradation in proton exchange membrane fuel cells Parthasarathy P, Virkar AV |
9213 - 9219 |
Analysis of carbon fiber brush loading in anodes on startup and performance of microbial fuel cells Hutchinson AJ, Tokash JC, Logan BE |
9220 - 9227 |
Electrochemical properties of composite cathodes for La0.995Ca0.005NbO4-delta-based proton conducting fuel cells Solis C, Vert VB, Fabuel M, Serra JM |
9228 - 9237 |
First-principles based microkinetic modeling of borohydride oxidation on a Au(111) electrode Rostamikia G, Mendoza AJ, Hickner MA, Janik MJ |
9238 - 9245 |
Sintering and conductivity of BaCe0.9Y0.1O2.95 synthesized by the sol-gel method Princivalle A, Martin G, Viazzi C, Guizard C, Grunbaum N, Dessemond L |
9246 - 9253 |
Study on proton-conducting solid oxide fuel cells with a conventional nickel cermet anode operating on dimethyl ether Liu Y, Guo YM, Wang W, Su C, Ran R, Wang HT, Shao ZP |
9254 - 9259 |
Enhanced volumetric hydrogen density in sodium alanate by compaction Lozano GA, von Colbe JMB, Bormann R, Klassen T, Dornheim M |
9260 - 9269 |
Direct hybrid glucose-oxygen enzymatic fuel cell based on tetrathiafulvalene-tetracyanoquinodimethane charge transfer complex as anodic mediator Ivanov I, Vidakovic-Koch T, Sundmacher K |
9270 - 9275 |
PdCo supported on multiwalled carbon nanotubes as an anode catalyst in a microfluidic formic acid fuel cell Morales-Acosta D, Morales-Acosta MD, Godinez LA, Alvarez-Contreras L, Duron-Torres SM, Ledesma-Garcia J, Arriaga LG |
9276 - 9283 |
Electrochemical performance of nanostructured La0.6Sr0.4CoO3-delta and Sm0.5Sr0.5CoO3-delta cathodes for IT-SOFCs Acuna LM, Pena-Martinez J, Marrero-Lopez D, Fuentes RO, Nunez P, Lamas DG |
9284 - 9289 |
Manganese dioxide-coated carbon nanotubes as an improved cathodic catalyst for oxygen reduction in a microbial fuel cell Zhang YP, Hu YY, Li SZ, Sun J, Hou B |
9290 - 9298 |
Impact of Cr-poisoning on the conductivity of LaNi0.6Fe0.4O3 Stodolny MK, Boukamp BA, Blank DHA, van Berkel FPF |
9299 - 9307 |
Enhanced electrocatalytic activity of platinum supported on nitrogen modified ordered mesoporous carbon Guo YX, He JP, Wang T, Xue HR, Hu YY, Li GX, Tang J, Sun X |
9308 - 9316 |
Preparation of main-chain-type and side-chain-type sulfonated poly(ether ether ketone) membranes for direct methanol fuel cell applications Tsai JC, Lin CK |
9317 - 9321 |
Power generation using carbon mesh cathodes with different diffusion layers in microbial fuel cells Luo Y, Zhang F, Wei B, Liu GL, Zhang RD, Logan BE |
9322 - 9330 |
Insight into the grain boundary effect on the ionic transport of yttria-stabilized zirconia at elevated temperatures from a molecular modeling perspective Chang KS, Lin YF, Tung KL |
9331 - 9338 |
High-temperature water-free proton conducting membranes based on poly(arylene ether ketone) containing pendant quaternary ammonium groups with enhanced proton transport Ma WJ, Zhao CJ, Lin HD, Zhang G, Ni J, Wang J, Wang S, Na H |
9339 - 9345 |
Effect of the impurities in crude bio-methanol on the performance of the direct methanol fuel cell Tsujiguchi T, Furukawa T, Nakagawa N |
9346 - 9351 |
An advantageous method for methanol oxidation: Design and fabrication of a nanoporous PtRuNi trimetallic electrocatalyst Wang W, Wang RF, Wang H, Ji S, Key J, Li XZ, Lei ZQ |
9352 - 9355 |
Investigation of cobalt-free perovskite Ba0.95La0.05FeO3-delta as a cathode for proton-conducting solid oxide fuel cells Yan LT, Ding HP, Zhu ZW, Xue XJ |
9356 - 9360 |
Ultrasonic synthesis of nitrogen-doped carbon nanofibers as platinum catalyst support for oxygen reduction Jiang Y, Zhang J, Qin YH, Niu DF, Zhang XS, Niu L, Zhou XG, Lu TH, Yuan WK |
9361 - 9364 |
Novel structured gadolinium doped ceria based electrolytes for intermediate temperature solid oxide fuel cells Timurkutluk B, Timurkutluk C, Mat MD, Kaplan Y |
9365 - 9368 |
Enhanced electrochemical performance of solution impregnated La0.8Sr0.2Co0.8Ni0.2O3-delta cathode for intermediate temperature solid oxide fuel cells Xu X, Wang FZ, Liu YH, Pu J, Chi B, Jian L |
9369 - 9372 |
Enhanced formic acid oxidation on Cu-Pd nanoparticles Dai L, Zou SZ |
9373 - 9381 |
Quantification of water in hydrophobic and hydrophilic flow channels subjected to gas purging via neutron imaging Tang HY, Santamaria A, Park JW, Lee C, Hwang W |
9382 - 9390 |
High performance polymer electrolytes based on main and side chain pyridine aromatic polyethers for high and medium temperature proton exchange membrane fuel cells Geormezi M, Chochos CL, Gourdoupi N, Neophytides SG, Kallitsis JK |
9391 - 9397 |
Chaotic flow-based fuel cell built on counter-flow microfluidic network: Predicting the over-limiting current behavior Xuan J, Leung DYC, Leung MKH, Wang HZ, Ni M |
9398 - 9406 |
Battery parameter identification with Pseudo Random Binary Sequence excitation (PRBS) Fairweather AJ, Foster MP, Stone DA |
9407 - 9418 |
Optimization of polymer electrolyte membrane fuel cell flow channels using a genetic algorithm Catlin G, Advani SG, Prasad AK |
9419 - 9428 |
Improving the operation of a fuel-cell power unit with supervision control - A simulation study Pregelj B, Vrecko D, Jovan V |
9429 - 9436 |
Percolation theory in SOFC composite electrodes: Effects of porosity and particle size distribution on effective properties Bertei A, Nicolella C |
9437 - 9444 |
Effects of cathode gas diffusion layer design on polymer electrolyte membrane fuel cell water management and performance Yau TC, Cimenti M, Bi XT, Stumper J |
9445 - 9450 |
Intermediate-temperature fuel cell employing thin-film solid acid/phosphate composite electrolyte fabricated by electrostatic spray deposition Matsui T, Noto T, Muroyama H, Iijima M, Eguchi K |
9451 - 9458 |
Experimental characterization of internal currents during the start-up of a proton exchange membrane fuel cell Lamibrac A, Maranzana G, Lottin O, Dillet J, Mainka J, Didierjean S, Thomas A, Moyne C |
9459 - 9466 |
High performance metal-supported solid oxide fuel cells with Gd-doped ceria barrier layers Klemenso T, Nielsen J, Blennow P, Persson AH, Stegk T, Christensen BH, Sonderby S |
9467 - 9472 |
Electrochemically assisted methane production in a biofilm reactor Villano M, Monaco G, Aulenta F, Majone M |
9473 - 9480 |
Analytical model to relate DMFC material properties to optimum fuel efficiency and system size Meyers JP, Bennett B |
9481 - 9487 |
A plate-frame flow-through microfluidic fuel cell stack Moore S, Sinton D, Erickson D |
9488 - 9499 |
Automation infrastructure and operation control strategy in a stand-alone power system based on renewable energy sources Ziogou C, Ipsakis D, Elmasides C, Stergiopoulos F, Papadopoulou S, Seferlis P, Voutetakis S |
9500 - 9509 |
Analysis and optimization of solid oxide fuel cell-based auxiliary power units using a generic zero-dimensional fuel cell model Goll S, Samsun RC, Peters R |
9510 - 9515 |
The function of hydrophobic cathodic backing layers for high energy passive direct methanol fuel cell Zhang J, Feng LG, Cai WW, Liu CP, Xing W |
9516 - 9527 |
Optimal integration strategies for a syngas fuelled SOFC and gas turbine hybrid Zhao YR, Sadhukhan J, Lanzini A, Brandon N, Shah N |
9528 - 9535 |
Preparation of functional layers for anode-supported solid oxide fuel cells by the reverse roll coating process Mucke R, Buchler O, Bram M, Leonide A, Ivers-Tiffee E, Buchkremer HP |
9536 - 9543 |
Effect of water on life prediction of liquid silicone rubber seals in polymer electrolyte membrane fuel cell Cui T, Chao YJ, Chen XM, Van Zee JW |
9544 - 9551 |
Ex situ and modeling study of two-phase flow in a single channel of polymer electrolyte membrane fuel cells Adroher XC, Wang Y |
9552 - 9560 |
Synthesis of mesoporous carbon-silica-polyaniline and nitrogen-containing carbon-silica films and their corrosion behavior in simulated proton exchange membrane fuel cells environment Wang T, He JP, Sun D, Guo YX, Ma YO, Hu Y, Li GX, Xue HR, Tang J, Sun X |
9561 - 9567 |
Computing approach of cathodic process within solid oxide electrolysis cell: Experiments and continuum model validation Grondin D, Deseure J, Ozil P, Chabriat JP, Grondin-Perez B, Brisse A |
9568 - 9573 |
Powering a wireless temperature sensor using sediment microbial fuel cells with vertical arrangement of electrodes Zhang F, Tian L, He Z |
9574 - 9578 |
Impact of charging efficiency variations on the effectiveness of variable-rate-based charging strategies for electric vehicles Amoroso FA, Cappuccino G |
9579 - 9584 |
Investigation of multi-metal catalysts for stable hydrogen production via urea electrolysis King RL, Botte GG |
9585 - 9589 |
Study on the structure and hydrogen absorption-desorption characteristics of as-cast and annealed La0.78Mg0.22Ni3.48Co0.22Cu0.12 alloys Huang TZ, Han JT, Zhang YH, Yu JM, Sun GX, Ren H, Yuan XX |
9590 - 9598 |
Effect of the preparation method on the performance of CuO-MnOx-CeO2 catalysts for selective oxidation of CO in H-2-rich streams Li J, Zhu PF, Zhou RX |
9599 - 9604 |
Improved hydrogen storage properties of Mg-V nanoparticles prepared by hydrogen plasma-metal reaction Liu T, Zhang TW, Qin CG, Zhu M, Li XG |
9605 - 9611 |
Vinylene carbonate and vinylene trithiocarbonate as electrolyte additives for lithium ion battery Chang CC, Hsu SH, Jung YF, Yang CH |
9612 - 9617 |
Characterization of Na-based phosphate as electrode materials for electrochemical cells Zaghib K, Trottier J, Hovington P, Brochu F, Guerfi A, Mauger A, Julien CM |
9618 - 9624 |
A fast synthesis of Li3V2(PO4)(3) crystals via glass-ceramic processing and their battery performance Nagamine K, Honma T, Komatsu T |
9625 - 9630 |
Enhanced electrochemical performance of porous NiO-Ni nanocomposite anode for lithium ion batteries Li XF, Dhanabalan A, Wang CL |
9631 - 9639 |
Reaction mechanisms for the limited reversibility of Li-O-2 chemistry in organic carbonate electrolytes Xu W, Xu K, Viswanathan VV, Towne SA, Hardy JS, Xiao J, Hu DH, Wang DY, Zhang JG |
9640 - 9647 |
Silicon and silicon-copper composite nanorods for anodes of Li-ion rechargeable batteries Au M, He YP, Zhao YP, Ghassemi H, Yassar RS, Garcia-Diaz B, Adams T |
9648 - 9653 |
Composite electrodes of disordered carbon and graphite for improved battery state estimation with minimal performance penalty Wang JS, Sherman E, Verbrugge M, Liu P |
9654 - 9664 |
Effect of electrolyte transport properties and variations in the morphological parameters on the variation of side reaction rate across the anode electrode and the aging of lithium ion batteries Jannesari H, Emami MD, Ziegler C |
9665 - 9671 |
High performance, environmentally friendly and low cost anodes for lithium-ion battery based on TiO2 anatase and water soluble binder carboxymethyl cellulose Mancini M, Nobili F, Tossici R, Wohlfahrt-Mehrens M, Marassi R |
9672 - 9681 |
Effects of electrode particle morphology on stress generation in silicon during lithium insertion DeLuca CM, Maute K, Dunn ML |
9682 - 9688 |
On the impact of the slurry mixing procedure in the electrochemical performance of composite electrodes for Li-ion batteries: A case study for mesocarbon microbeads (MCMB) graphite and Co3O4 Ponrouch A, Palacin MR |
9689 - 9695 |
Nanocrystalline Ti2/3Sn1/3O2 as anode material for Li-ion batteries Issac I, Scheuermann M, Becker SM, Bardaji EG, Adelhelm C, Wang D, Kubel C, Indris S |
9696 - 9701 |
Implications of the first cycle irreversible capacity on cell balancing for Li2MnO3-LiMO2 (M = Ni, Mn, Co) Li-ion cathodes West WC, Staniewicz RJ, Ma C, Robak J, Soler J, Smart MC, Ratnakumar BV |
9702 - 9707 |
xLi(2)MnO(3)center dot(1-x)LiMO2 blended with LiFePO4 to achieve high energy density and pulse power capability Gallagher KG, Kang SH, Park SU, Han SY |
9708 - 9718 |
Physics-based lithium ion silver vanadium oxide cathode model Strange DA, Rayman S, Shaffer JS, White RE |
9719 - 9730 |
Development of safe, green and high performance ionic liquids-based batteries (ILLIBATT project) Balducci A, Jeong SS, Kim GT, Passerini S, Winter M, Schmuck M, Appetecchi GB, Marcilla R, Mecerreyes D, Barsukov V, Khomenko V, Cantero I, De Meatza I, Holzapfel M, Tran N |
9731 - 9736 |
Synthesis and characterization of macroporous tin oxide composite as an anode material for Li-ion batteries Yim CH, Baranova EA, Courtel FM, Abu-Lebdeh Y, Davidson IJ |
9737 - 9742 |
Crystal structure and physical properties of lithium difluoro(oxalato)borate (LiDFOB or LiBF(2)Ox) Allen JL, Han SD, Boyle PD, Henderson WA |
9743 - 9750 |
Comparative study of EC/DMC LiTFSI and LiPF6 electrolytes for electrochemical storage Dahbi M, Ghamouss F, Tran-Van F, Lemordant D, Anouti M |
9751 - 9756 |
In situ ceramic fillers of electrospun thermoplastic polyurethane/poly(vinylidene fluoride) based gel polymer electrolytes for Li-ion batteries Wu N, Cao Q, Wang XY, Li S, Li XY, Deng HY |
9757 - 9766 |
Modeling the capacity degradation of LiFePO4/graphite batteries based on stress coupling analysis Li Z, Lu LG, Ouyang MG, Xiao YK |
9767 - 9773 |
Solid polymer electrolytes with sulfur based ionic liquid for lithium batteries Fisher AS, Khalid MB, Widstrom M, Kofinas P |
9774 - 9779 |
Improvement of cyclic behavior of a ball-milled SiO and carbon nanofiber composite anode for lithium-ion batteries Si Q, Hanai K, Ichikawa T, Phillipps MB, Hirano A, Imanishi N, Yamamoto O, Takeda Y |
9780 - 9785 |
Nanocone-arrays supported tin-based anode materials for lithium-ion battery Du ZJ, Zhang SC, Xing YL, Wu XM |
9786 - 9791 |
NH4V3O8/carbon nanotubes composite cathode material with high capacity and good rate capability Wang HY, Huang KL, Ren Y, Huang XB, Liu SQ, Wang WJ |
9792 - 9799 |
Mitigation of the irreversible capacity and electrolyte decomposition in a LiNi0.5Mn1.5O4/nano-TiO2 Li-ion battery Brutti S, Gentili V, Reale P, Carbone L, Panero S |
9800 - 9809 |
Low temperature decal transfer method for hydrocarbon membrane based membrane electrode assemblies in polymer electrolyte membrane fuel cells Yoon YJ, Kim TH, Kim SU, Yu DM, Hong YT |
9810 - 9814 |
Effects of vinylene carbonate on high temperature storage of high voltage Li-ion batteries Eom JY, Jung IH, Lee JH |
9815 - 9819 |
A novel structure of ceramics electrolyte for future lithium battery Kotobuki M, Suzuki Y, Kanamura K, Sato Y, Yamamoto K, Yoshida T |
9820 - 9824 |
Suppression of Li deposition on surface of graphite using carbon coating by thermal vapor deposition process Park G, Gunawardhana N, Nakamura H, Lee Y, Yoshio M |
9825 - 9829 |
Low temperature behaviour of TiO2 rutile as negative electrode material for lithium-ion batteries Marinaro M, Pfanzelt M, Kubiak P, Marassi R, Wohlfahrt-Mehrens M |
9830 - 9834 |
In situ lithiation of TiS2 enabled by spontaneous decomposition of Li3N Yersak TA, Trevey JE, Lee SH |
9835 - 9838 |
Influence of the cathode porosity on the discharge performance of the lithium-oxygen battery Younesi SR, Urbonaite S, Bjorefors F, Edstrom K |
9839 - 9843 |
Improved cycling performances of lithium sulfur batteries with LiNO3-modified electrolyte Liang X, Wen ZY, Liu Y, Wu MF, Jin J, Zhang H, Wu XW |
9844 - 9844 |
Comment on "Effect of gas diffusion layer properties on the time of breakthrough" by Shahraeeni and Hoorfar Gostick JT, Ioannidis MA |
9845 - 9845 |
"Reoxidation behavior of Ni-Fe bimetallic anode substrate in solid oxide fuel cells using a thin LaGaO3 based film electrolyte" (vol 196, pg 6062, 2011) Ju YW, Ida S, Inagaki T, Ishihara T |